TY - JOUR A1 - Würthner, Frank A1 - Meza-Chincha, Ana-Lucia A1 - Schindler, Dorothee A1 - Natali, Mirco T1 - Effects of Photosensitizers and Reaction Media on Light‐Driven Water Oxidation with Trinuclear Ruthenium Macrocycles JF - ChemPhotoChem N2 - Photocatalytic water oxidation is a promising process for the production of solar fuels and the elucidation of factors that influence this process is of high significance. Thus, we have studied in detail light‐driven water oxidation with a trinuclear Ru(bda) (bda: 2,2’‐bipyridine‐6,6’‐dicarboxylate) macrocycle MC3 and its highly water soluble derivative m‐CH\(_2\)NMe\(_2\)‐MC3 using a series of ruthenium tris(bipyridine) complexes as photosensitizers under varied reaction conditions. Our investigations showed that the catalytic activities of these Ru macrocycles are significantly affected by the choice of photosensitizer (PS) and reaction media, in addition to buffer concentration, light intensity and concentration of the sensitizer. Our steady‐state and transient spectroscopic studies revealed that the photocatalytic performance of trinuclear Ru(bda) macrocycles is not limited by their intrinsic catalytic activities but rather by the efficiency of photogeneration of oxidant PS\(^+\) and its ability to act as an oxidizing agent to the catalysts as both are strongly dependent on the choice of photosensitizer and the amount of employed organic co‐solvent. KW - photosenitizers KW - water oxidation KW - ruthenium complexes KW - macrocycles KW - trinuclear KW - homogenous catalysis KW - photocatalysis Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230116 VL - 5 IS - 2 ER - TY - JOUR A1 - Würthner, Frank A1 - Noll, Niklas T1 - A Calix[4]arene‐Based Cyclic Dinuclear Ruthenium Complex for Light‐Driven Catalytic Water Oxidation JF - Chemistry - A European Journal N2 - A cyclic dinuclear ruthenium(bda) (bda: 2,2’‐bipyridine‐6,6’‐dicarboxylate) complex equipped with oligo(ethylene glycol)‐functionalized axial calix[4]arene ligands has been synthesized for homogenous catalytic water oxidation. This novel Ru(bda) macrocycle showed significantly increased catalytic activity in chemical and photocatalytic water oxidation compared to the archetype mononuclear reference [Ru(bda)(pic)\(_2\)]. Kinetic investigations, including kinetic isotope effect studies, disclosed a unimolecular water nucleophilic attack mechanism of this novel dinuclear water oxidation catalyst (WOC) under the involvement of the second coordination sphere. Photocatalytic water oxidation with this cyclic dinuclear Ru complex using [Ru(bpy)\(_3\)]Cl\(_2\) as a standard photosensitizer revealed a turnover frequency of 15.5 s\(^{−1}\) and a turnover number of 460. This so far highest photocatalytic performance reported for a Ru(bda) complex underlines the potential of this water‐soluble WOC for artificial photosynthesis. KW - water KW - oxidation KW - ruthenium KW - dinuclear KW - catalytic KW - artificial photosynthesis KW - homogenous catalysis KW - photocatalysis KW - ruthenium complexes KW - water oxidation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230030 UR - https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/chem.202004486 VL - 27 IS - 1 ER - TY - JOUR A1 - Schlosser, Julika A1 - Cibulka, Radek A1 - Groß, Philipp A1 - Ihmels, Heiko A1 - Mohrschladt, Christian J. T1 - Visible‐Light‐Induced Di‐\(\pi\)‐Methane Rearrangement of Dibenzobarrelene Derivatives JF - ChemPhotoChem N2 - It is demonstrated that the di‐\(\pi\)‐methane (DPM) rearrangement of carbonyl‐substituted dibenzobarrelene (9,10‐dihydro‐9,10‐ethenoanthracene) derivatives is induced by visible‐light‐induced triplet photosensitization with Ir(ppy)\(_{3}\), Ir(dFppy)\(_{3}\) or 1‐butyl‐7,8‐dimethoxy‐3‐methylalloxazine as catalysts, whereas derivatives that lack carbonyl substituents are photoinert under these conditions. Notably, the products are formed almost quantitatively. KW - dibenzosemibullvalenes KW - di-\(\pi\)-methane rearrangement KW - ethenoanthracenes KW - photocatalysis KW - photosensitization Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212633 VL - 4 IS - 2 SP - 132 EP - 137 ER - TY - JOUR A1 - Schindler, Dorothee A1 - Gil‐Sepulcre, Marcos A1 - Lindner, Joachim O. A1 - Stepanenko, Vladimir A1 - Moonshiram, Dooshaye A1 - Llobet, Antoni A1 - Würthner, Frank T1 - Efficient Electrochemical Water Oxidation by a Trinuclear Ru(bda) Macrocycle Immobilized on Multi‐Walled Carbon Nanotube Electrodes JF - Advanced Energy Materials N2 - Catalytic water splitting is a viable process for the generation of renewable fuels. Here it is reported for the first time that a trinuclear supramolecular Ru(bda) (bda: 2,2′‐bipyridine‐6,6′‐dicarboxylate) catalyst, anchored on multi‐walled carbon nanotubes and subsequently immobilized on glassy carbon electrodes, shows outstanding performance in heterogeneous water oxidation. Activation of the catalyst on anodes by repetitive cyclic voltammetry (CV) scans results in a catalytic current density of 186 mA cm\(^{−2}\) at a potential of 1.45 V versus NHE. The activated catalyst performs water oxidation at an onset overpotential of 330 mV. The remarkably high stability of the hybrid anode is demonstrated by X‐ray absorption spectroscopy and electrochemically, revealing the absence of any degradation after 1.8 million turnovers. Foot of the wave analysis of CV data of activated electrodes with different concentrations of catalyst indicates a monomolecular water nucleophilic attack mechanism with an apparent rate constant of TOFmax (turnover frequency) of 3200 s\(^{−1}\). KW - electrocatalysis KW - heterogeneous catalysis KW - renewable fuels KW - ruthenium bda complexes KW - water splitting Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218381 VL - 10 IS - 43 ER - TY - JOUR A1 - Bäumer, Nils A1 - Kartha, Kalathil K. A1 - Allampally, Naveen Kumar A1 - Yagai, Shiki A1 - Albuquerque, Rodrigo Q. A1 - Fernández, Gustavo T1 - Kontrolle über Selbstassemblierung durch Ausnutzung von Koordinationsisomerie JF - Angewandte Chemie N2 - Hierin wird die inhärente geometrische Isomerie eines PtII Komplexes als neues Werkzeug zur Kontrolle von supramolekularen Assemblierungsprozessen ausgenutzt. Bestrahlung mit UV‐Licht sowie die sorgfältige Auswahl des verwendeten Lösungsmittels, der Temperatur und Konzentration führen zu einer regelbaren Koordinationsisomerie. Dies ermöglicht ein vollständig reversibles Schalten zwischen zwei definierten aggregierten Spezies (1D Fasern ↔ 2D Lamellen) mit unterschiedlichem photoresponsivem Verhalten. Unsere Erkenntnisse erweitern nicht nur die Reichweite von Koordinationsisomerie, sondern eröffnen auch aufregende Möglichkeiten zur Entwicklung neuartiger stimuliresponsiver Materialien. KW - Koordinationsisomerie KW - Photoresponsives Verhalten KW - Selbstassemblierung KW - Supramolekulare Polymere KW - π-Konjugierte Systeme Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212176 VL - 131 IS - 44 SP - 15772 EP - 15776 ER - TY - JOUR A1 - Liaqat, Anam A1 - Stiller, Carina A1 - Michel, Manuela A1 - Sednev, Maksim V. A1 - Höbartner, Claudia T1 - N\(^6\)-Isopentenyladenosine in RNA Determines the Cleavage Site of Endonuclease Deoxyribozymes JF - Angewandte Chemie International Edition N2 - RNA-cleaving deoxyribozymes can serve as selective sensors and catalysts to examine the modification state of RNA. However, site-specific endonuclease deoxyribozymes that selectively cleave posttranscriptionally modified RNA are extremely rare and their specificity over unmodified RNA is low. In this study, we report that the native tRNA modification N\(^6\)-isopentenyladenosine (i\(^6\)A) strongly enhances the specificity and has the power to reconfigure the active site of an RNA-cleaving deoxyribozyme. Using in vitro selection, we identified a DNA enzyme that cleaves i\(^6\)A-modified RNA at least 2500-fold faster than unmodified RNA. Another deoxyribozyme shows unique and unprecedented behaviour by shifting its cleavage site in the presence of the i\(^6\)A RNA modification. Together with deoxyribozymes that are strongly inhibited by i\(^6\)A, these results highlight intricate ways of modulating the catalytic activity of DNA by posttranscriptional RNA modifications. KW - Deoxyribozymes KW - Epitranscriptomics KW - in vitro selection KW - RNA modification KW - site-specific RNA cleavage Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-212121 ET - Early View ER - TY - JOUR A1 - Schäfer, Natalie A1 - Bühler, Michael A1 - Heyer, Lisa A1 - Röhr, Merle I. S. A1 - Beuerle, Florian T1 - Endohedral Hydrogen Bonding Templates the Formation of a Highly Strained Covalent Organic Cage Compound JF - Chemistry—A European Journal N2 - A highly strained covalent organic cage compound was synthesized from hexahydroxy tribenzotriquinacene (TBTQ) and a meta-terphenyl-based diboronic acid with an additional benzoic acid substituent in 2’-position. Usually, a 120° bite angle in the unsubstituted ditopic linker favors the formation of a [4+6] cage assembly. Here, the introduction of the benzoic acid group is shown to lead to a perfectly preorganized circular hydrogen-bonding array in the cavity of a trigonal-bipyramidal [2+3] cage, which energetically overcompensates the additional strain energy caused by the larger mismatch in bite angles for the smaller assembly. The strained cage compound was analyzed by mass spectrometry and \(^{1}\)H, \(^{13}\)C and DOSY NMR spectroscopy. DFT calculations revealed the energetic contribution of the hydrogen-bonding template to the cage stability. Furthermore, molecular dynamics simulations on early intermediates indicate an additional kinetic effect, as hydrogen bonding also preorganizes and rigidifies small oligomers to facilitate the exclusive formation of smaller and more strained macrocycles and cages. KW - boronate esters KW - hydrogen bonding KW - dynamic covalent chemistry KW - density functional calculations KW - cage compounds Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256762 VL - 27 IS - 19 ER - TY - JOUR A1 - Mieczkowski, Mateusz A1 - Steinmetzger, Christian A1 - Bessi, Irene A1 - Lenz, Ann-Kathrin A1 - Schmiedel, Alexander A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Pena, Vladimir A1 - Höbartner, Claudia T1 - Large Stokes shift fluorescence activation in an RNA aptamer by intermolecular proton transfer to guanine JF - Nature Communications N2 - Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate conditional fluorophores. The Chili RNA aptamer mimics large Stokes shift fluorescent proteins and exhibits high affinity for 3,5-dimethoxy-4-hydroxybenzylidene imidazolone (DMHBI) derivatives to elicit green or red fluorescence emission. Here, we elucidate the structural and mechanistic basis of fluorescence activation by crystallography and time-resolved optical spectroscopy. Two co-crystal structures of the Chili RNA with positively charged DMHBO+ and DMHBI+ ligands revealed a G-quadruplex and a trans-sugar-sugar edge G:G base pair that immobilize the ligand by π-π stacking. A Watson-Crick G:C base pair in the fluorophore binding site establishes a short hydrogen bond between the N7 of guanine and the phenolic OH of the ligand. Ultrafast excited state proton transfer (ESPT) from the neutral chromophore to the RNA was found with a time constant of 130 fs and revealed the mode of action of the large Stokes shift fluorogenic RNA aptamer. KW - Fluorogenic RNA Aptamers KW - Synthetic Functional RNAs KW - Chili RNA Aptamer KW - Co-Crystal Structures of Chili RNA KW - RNA KW - Optical Spectroscopy KW - Structural Biology KW - X-ray Crystallography Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-254527 VL - 12 ER - TY - JOUR A1 - Ivanova, Svetlana A1 - Köster, Eva A1 - Holstein, Julian J. A1 - Keller, Niklas A1 - Clever, Guido H. A1 - Bein, Thomas A1 - Beuerle, Florian T1 - Isoreticular crystallization of highly porous cubic covalent organic cage compounds JF - Angewandte Chemie International Edition N2 - Modular frameworks featuring well-defined pore structures in microscale domains establish tailor-made porous materials. For open molecular solids however, maintaining long-range order after desolvation is inherently challenging, since packing is usually governed by only a few supramolecular interactions. Here we report on two series of nanocubes obtained by co-condensation of two different hexahydroxy tribenzotriquinacenes (TBTQs) and benzene-1,4-diboronic acids (BDBAs) with varying linear alkyl chains in 2,5-position. n-Butyl groups at the apical position of the TBTQ vertices yielded soluble model compounds, which were analyzed by mass spectrometry and NMR spectroscopy. In contrast, methyl-substituted cages spontaneously crystallized as isostructural and highly porous solids with BET surface areas and pore volumes of up to 3426 m\(^2\) g\(^{-1}\) and 1.84 cm\(^3\) g\(^{-1}\). Single crystal X-ray diffraction and sorption measurements revealed an intricate cubic arrangement of alternating micro- and mesopores in the range of 0.97–2.2 nm that are fine-tuned by the alkyl substituents at the BDBA linker. KW - organic chemistry KW - structure elucidation KW - boronateesters KW - cage compounds KW - dynamic covalent chemistry KW - porousmaterials Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256462 VL - 60 IS - 32 ER - TY - JOUR A1 - Turkin, Arthur A1 - Holzapfel, Marco A1 - Agarwal, Mohit A1 - Fischermeier, David A1 - Mitric, Roland A1 - Schweins, Ralf A1 - Gröhns, Franziska A1 - Lambert, Christoph T1 - Solvent Induced Helix Folding of Defined Indolenine Squaraine Oligomers JF - Chemistry—A European Journal N2 - A protecting group strategy was employed to synthesise a series of indolenine squaraine dye oligomers up to the nonamer. The longer oligomers show a distinct solvent dependence of the absorption spectra, that is, either a strong blue shift or a strong red shift of the lowest energy bands in the near infrared spectral region. This behaviour is explained by exciton coupling theory as being due to H- or J-type coupling of transition moments. The H-type coupling is a consequence of a helix folding in solvents with a small Hansen dispersity index. DOSY NMR, small angle neutron scattering (SANS), quantum chemical and force field calculations agree upon a helix structure with an unusually large pitch and open voids that are filled with solvent molecules, thereby forming a kind of clathrate. The thermodynamic parameters of the folding process were determined by temperature dependent optical absorption spectra. KW - UV/Vis spectroscopy KW - dye chemistry KW - solvent effects KW - superstructure KW - supramolecular folding Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256869 VL - 27 IS - 32 ER - TY - JOUR A1 - Bold, Kevin A1 - Stolte, Matthias A1 - Shoyama, Kazutaka A1 - Holzapfel, Marco A1 - Schmiedel, Alexander A1 - Lambert, Christoph A1 - Würthner, Frank T1 - Macrocyclic donor-acceptor dyads composed of a perylene bisimide dye surrounded by oligothiophene bridges JF - Angewandte Chemie Internationale Edition N2 - Two macrocyclic architectures comprising oligothiophene strands that connect the imide positions of a perylene bisimide (PBI) dye have been synthesized via a platinum-mediated cross-coupling strategy. The crystal structure of the double bridged PBI reveals all syn-arranged thiophene units that completely enclose the planar PBI chromophore via a 12-membered macrocycle. The target structures were characterized by steady-state UV/Vis absorption, fluorescence and transient absorption spectroscopy, as well as cyclic and differential pulse voltammetry. Both donor–acceptor dyads show ultrafast Förster Resonance Energy Transfer and photoinduced electron transfer, thereby leading to extremely low fluorescence quantum yields even in the lowest polarity cyclohexane solvent. KW - organic chemistry KW - photoinduced electron transfer KW - donor–acceptor dyads KW - macrocycles KW - oligothiophenes KW - perylenebisimide Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256569 VL - 61 IS - 1 ER - TY - JOUR A1 - Zhang, Fangyuan A1 - Radacki, Krzysztof A1 - Braunschweig, Holger A1 - Lambert, Christoph A1 - Ravat, Prince T1 - Zinc-[7]helicenocyanine and its discrete π-stacked homochiral Dimer JF - Angewandte Chemie International Edition N2 - In this communication, we demonstrate a novel approach to prepare a discrete dimer of chiral phthalocyanine (Pc) by exploiting the flexible molecular geometry of helicenes, which enables structural interlocking and strong aggregation tendency of Pcs. Synthesized [7]helicene-Pc hybrid molecular structure, zinc-[7]helicenocyanine (Zn-7HPc), exclusively forms a stable dimeric pair consisting of two homochiral molecules. The dimerization constants were estimated to be as high as 8.96×10\(^6\) M\(^{−1}\) and 3.42×107 M\(^{−1}\) in THF and DMSO, respectively, indicating remarkable stability of dimer. In addition, Zn\(^{-7}\)HPc exhibited chiral self-sorting behavior, which resulted in preferential formation of a homochiral dimer also in the racemic sample. Two phthalocyanine subunits in the dimeric form strongly communicate with each other as revealed by a large comproportionation constant and observation of an IV-CT band for the thermodynamically stable mixed-valence state. KW - organic chemistry KW - supramolecular assembly KW - chirality KW - helicenes KW - homochiral dimer KW - phthalocyanines Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-256534 VL - 60 ER - TY - JOUR A1 - Kabinger, Florian A1 - Stiller, Carina A1 - Schmitzová, Jana A1 - Dienemann, Christian A1 - Kokic, Goran A1 - Hillen, Hauke S. A1 - Höbartner, Claudia A1 - Cramer, Patrick T1 - Mechanism of molnupiravir-induced SARS-CoV-2 mutagenesis JF - Nature Structural & Molecular Biology N2 - Molnupiravir is an orally available antiviral drug candidate currently in phase III trials for the treatment of patients with COVID-19. Molnupiravir increases the frequency of viral RNA mutations and impairs SARS-CoV-2 replication in animal models and in humans. Here, we establish the molecular mechanisms underlying molnupiravir-induced RNA mutagenesis by the viral RNA-dependent RNA polymerase (RdRp). Biochemical assays show that the RdRp uses the active form of molnupiravir, β-d-\(N^4\)-hydroxycytidine (NHC) triphosphate, as a substrate instead of cytidine triphosphate or uridine triphosphate. When the RdRp uses the resulting RNA as a template, NHC directs incorporation of either G or A, leading to mutated RNA products. Structural analysis of RdRp–RNA complexes that contain mutagenesis products shows that NHC can form stable base pairs with either G or A in the RdRp active center, explaining how the polymerase escapes proofreading and synthesizes mutated RNA. This two-step mutagenesis mechanism probably applies to various viral polymerases and can explain the broad-spectrum antiviral activity of molnupiravir. KW - Molnupiravir KW - RNA-Dependent RNA Polymerase KW - SARS-CoV2 Replication Impairment KW - Molnupiravir-Induced RNA Mutagenesis Mechanism KW - Cryoelectron Microscopy Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-254603 VL - 28 ER - TY - JOUR A1 - Weh, Manuel A1 - Rühe, Jessica A1 - Herbert, Benedikt A1 - Krause, Ana‐Maria A1 - Würthner, Frank T1 - Deracemization of Carbohelicenes by a Chiral Perylene Bisimide Cyclophane Template Catalyst JF - Angewandte Chemie International Edition N2 - Deracemization describes the conversion of a racemic mixture of a chiral molecule into an enantioenriched mixture or an enantiopure compound without structural modifications. Herein, we report an inherently chiral perylene bisimide (PBI) cyclophane whose chiral pocket is capable of transforming a racemic mixture of [5]‐helicene into an enantioenriched mixture with an enantiomeric excess of 66 %. UV/Vis and fluorescence titration studies reveal this cyclophane host composed of two helically twisted PBI dyes has high binding affinities for the respective homochiral carbohelicene guests, with outstanding binding constants of up to 3.9×10\(^{10}\) m\(^{-1}\) for [4]‐helicene. 2D NMR studies and single‐crystal X‐ray analysis demonstrate that the observed strong and enantioselective binding of homochiral carbohelicenes and the successful template‐catalyzed deracemization of [5]‐helicene can be explained by the enzyme‐like perfect shape complementarity of the macrocyclic supramolecular host. KW - chirality transfer KW - cyclophanes KW - deracemization KW - dyes/pigments KW - template catalysis Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-244787 VL - 60 IS - 28 SP - 15323 EP - 15327 ER - TY - JOUR A1 - Lübtow, Michael M. A1 - Marciniak, Henning A1 - Schmiedel, Alexander A1 - Roos, Markus A1 - Lambert, Christoph A1 - Luxenhofer, Robert T1 - Ultra-high to ultra-low drug loaded micelles: Probing host-guest interactions by fluorescence spectroscopy JF - Chemistry - A European Journal N2 - Polymer micelles are an attractive means to solubilize water insoluble compounds such as drugs. Drug loading, formulations stability and control over drug release are crucial factors for drug‐loaded polymer micelles. The interactions between the polymeric host and the guest molecules are considered critical to control these factors but typically barely understood. Here, we compare two isomeric polymer micelles, one of which enables ultra‐high curcumin loading exceeding 50 wt.%, while the other allows a drug loading of only 25 wt.%. In the low capacity micelles, steady‐state fluorescence revealed a very unusual feature of curcumin fluorescence, a high energy emission at 510 nm. Time‐resolved fluorescence upconversion showed that the fluorescence life time of the corresponding species is too short in the high‐capacity micelles, preventing an observable emission in steady‐state. Therefore, contrary to common perception, stronger interactions between host and guest can be detrimental to the drug loading in polymer micelles. KW - curcumin KW - drug delivery KW - fluorenscence KW - poly(2-oxazine) KW - pol(2-oxazoline) KW - Polymer-drug interaction KW - upconversion Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-206128 VL - 25 IS - 54 ER - TY - INPR A1 - Neitz, Hermann A1 - Höbartner, Claudia T1 - A tolane-modified 5-ethynyluridine as a universal and fluorogenic photochemical DNA crosslinker T2 - Chemical Communications N2 - We report the fluorescent nucleoside ToldU and its application as a photoresponsive crosslinker in three different DNA architectures with enhanced fluorescence emission of the crosslinked products. The fluorogenic ToldU crosslinking reaction enables the assembly of DNA polymers in a hybridization chain reaction for the concentration-dependent detectio of a specific DNA sequence. KW - Tolane-Modified Fluorescent Nucleosides KW - Photoresponsive DNA Crosslinker Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-328255 ET - submitted version ER - TY - INPR A1 - Dietzsch, Julia A1 - Jayachandran, Ajay A1 - Mueller, Stefan A1 - Höbartner, Claudia A1 - Brixner, Tobias T1 - Excitonic coupling of RNA-templated merocyanine dimer studied by higher-order transient absorption spectroscopy T2 - Chemical Communications N2 - We report the synthesis and spectroscopic analysis of RNA containing the barbituric acid merocyanine rBAM2 as a nucleobase surrogate. Incorporation into RNA strands by solid-phase synthesis leads to fluorescence enhancement compared to the free chromophore. In addition, linear absorption studies show the formation of an excitonically coupled H-type dimer in the hybridized duplex. Ultrafast third- and fifth-order transient absorption spectroscopy of this non-fluorescent dimer suggests immediate (sub-200 fs) exciton transfer and annihilation due to the proximity of the rBAM2 units. KW - Barbituric Acid Merocyanines KW - Nucleobase Surrogate Incorporation KW - Higher-order Transient Absorption Spectroscopy KW - rBAM2-labeled RNA strands Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-327772 ET - submitted version ER - TY - JOUR A1 - Mieczkowski, Mateusz A1 - Steinmetzger, Christian A1 - Bessi, Irene A1 - Lenz, Ann-Kathrin A1 - Schmiedel, Alexander A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Pena, Vladimir A1 - Höbartner, Claudia T1 - Large Stokes shift fluorescence activation in an RNA aptamer by intermolecular proton transfer to guanine JF - Nature Communications N2 - Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate conditional fluorophores. The Chili RNA aptamer mimics large Stokes shift fluorescent proteins and exhibits high affinity for 3,5-dimethoxy-4-hydroxybenzylidene imidazolone (DMHBI) derivatives to elicit green or red fluorescence emission. Here, we elucidate the structural and mechanistic basis of fluorescence activation by crystallography and time-resolved optical spectroscopy. Two co-crystal structures of the Chili RNA with positively charged DMHBO+ and DMHBI+ ligands revealed a G-quadruplex and a trans-sugar-sugar edge G:G base pair that immobilize the ligand by π-π stacking. A Watson-Crick G:C base pair in the fluorophore binding site establishes a short hydrogen bond between the N7 of guanine and the phenolic OH of the ligand. Ultrafast excited state proton transfer (ESPT) from the neutral chromophore to the RNA was found with a time constant of 130 fs and revealed the mode of action of the large Stokes shift fluorogenic RNA aptamer. KW - RNA KW - optical spectroscopy KW - structural biology KW - X-ray crystallography Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-270274 VL - 12 ER - TY - JOUR A1 - Becam, Jérôme A1 - Walter, Tim A1 - Burgert, Anne A1 - Schlegel, Jan A1 - Sauer, Markus A1 - Seibel, Jürgen A1 - Schubert-Unkmeir, Alexandra T1 - Antibacterial activity of ceramide and ceramide analogs against pathogenic Neisseria JF - Scientific Reports N2 - Certain fatty acids and sphingoid bases found at mucosal surfaces are known to have antibacterial activity and are thought to play a more direct role in innate immunity against bacterial infections. Herein, we analysed the antibacterial activity of sphingolipids, including the sphingoid base sphingosine as well as short-chain C\(_{6}\) and long-chain C\(_{16}\)-ceramides and azido-functionalized ceramide analogs against pathogenic Neisseriae. Determination of the minimal inhibitory concentration (MIC) and minimal bactericidal concentration (MBC) demonstrated that short-chain ceramides and a ω-azido-functionalized C\(_{6}\)-ceramide were active against Neisseria meningitidis and N. gonorrhoeae, whereas they were inactive against Escherichia coli and Staphylococcus aureus. Kinetic assays showed that killing of N. meningitidis occurred within 2 h with ω–azido-C\(_{6}\)-ceramide at 1 X the MIC. Of note, at a bactericidal concentration, ω–azido-C\(_{6}\)-ceramide had no significant toxic effect on host cells. Moreover, lipid uptake and localization was studied by flow cytometry and confocal laser scanning microscopy (CLSM) and revealed a rapid uptake by bacteria within 5 min. CLSM and super-resolution fluorescence imaging by direct stochastic optical reconstruction microscopy demonstrated homogeneous distribution of ceramide analogs in the bacterial membrane. Taken together, these data demonstrate the potent bactericidal activity of sphingosine and synthetic short-chain ceramide analogs against pathogenic Neisseriae. KW - ceramide analogs KW - Neisseria KW - ceramide Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159367 VL - 7 ER - TY - JOUR A1 - Karak, Suvendu A1 - Stepanenko, Vladimir A1 - Addicoat, Matthew A. A1 - Keßler, Philipp A1 - Moser, Simon A1 - Beuerle, Florian A1 - Würthner, Frank T1 - A Covalent Organic Framework for Cooperative Water Oxidation JF - Journal of the American Chemical Society N2 - The future of water-derived hydrogen as the “sustainable energy source” straightaway bets on the success of the sluggish oxygen-generating half-reaction. The endeavor to emulate the natural photosystem II for efficient water oxidation has been extended across the spectrum of organic and inorganic combinations. However, the achievement has so far been restricted to homogeneous catalysts rather than their pristine heterogeneous forms. The poor structural understanding and control over the mechanistic pathway often impede the overall development. Herein, we have synthesized a highly crystalline covalent organic framework (COF) for chemical and photochemical water oxidation. The interpenetrated structure assures the catalyst stability, as the catalyst’s performance remains unaltered after several cycles. This COF exhibits the highest ever accomplished catalytic activity for such an organometallic crystalline solid-state material where the rate of oxygen evolution is as high as ∼26,000 μmol L\(^{–1}\) s\(^{–1}\) (second-order rate constant k ≈ 1650 μmol L s\(^{–1}\) g\(^{–2}\)). The catalyst also proves its exceptional activity (k ≈ 1600 μmol L s\(^{–1}\) g\(^{–2}\)) during light-driven water oxidation under very dilute conditions. The cooperative interaction between metal centers in the crystalline network offers 20–30-fold superior activity during chemical as well as photocatalytic water oxidation as compared to its amorphous polymeric counterpart. KW - water oxidation KW - sustainable energy source KW - covalent organic framework KW - catalyst KW - crystalline KW - catalysis KW - nanoparticles Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-287591 UR - https://pubs.acs.org/doi/10.1021/jacs.2c07282 SN - 0002-7863 VL - 144 IS - 38 ER - TY - JOUR A1 - Röhr, Merle I. S. T1 - New theoretical methods for the exploration of functional landscapes JF - International Journal of Quantum Chemistry N2 - Molecular functionality can be often directly attributed to given properties of the electronic wavefunction. Analogous to the potential energy surface, these properties can be represented as a function of the nuclear coordinates, giving rise to molecular “functional landscapes.” However, so far there has been no possibility for their systematic investigation. This perspective aims to discuss the development of new theoretical methods based on the multistate extension of the metadynamics approach, employing electronic collective variables. This emerging methodology allows to explore functional landscapes and to gain a deeper understanding of the structure–function relation in molecules and complex molecular systems in the ground and excited electronic state. KW - structure–function relation KW - electronic collective variables KW - electronic wavefunction KW - metadynamics Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-257682 VL - 121 IS - 24 ER - TY - JOUR A1 - Zimniak, Melissa A1 - Kirschner, Luisa A1 - Hilpert, Helen A1 - Geiger, Nina A1 - Danov, Olga A1 - Oberwinkler, Heike A1 - Steinke, Maria A1 - Sewald, Katherina A1 - Seibel, Jürgen A1 - Bodem, Jochen T1 - The serotonin reuptake inhibitor Fluoxetine inhibits SARS-CoV-2 in human lung tissue JF - Scientific Reports N2 - To circumvent time-consuming clinical trials, testing whether existing drugs are effective inhibitors of SARS-CoV-2, has led to the discovery of Remdesivir. We decided to follow this path and screened approved medications "off-label" against SARS-CoV-2. Fluoxetine inhibited SARS-CoV-2 at a concentration of 0.8 mu g/ml significantly in these screenings, and the EC50 was determined with 387 ng/ml. Furthermore, Fluoxetine reduced viral infectivity in precision-cut human lung slices showing its activity in relevant human tissue targeted in severe infections. Fluoxetine treatment resulted in a decrease in viral protein expression. Fluoxetine is a racemate consisting of both stereoisomers, while the S-form is the dominant serotonin reuptake inhibitor. We found that both isomers show similar activity on the virus, indicating that the R-form might specifically be used for SARS-CoV-2 treatment. Fluoxetine inhibited neither Rabies virus, human respiratory syncytial virus replication nor the Human Herpesvirus 8 or Herpes simplex virus type 1 gene expression, indicating that it acts virus-specific. Moreover, since it is known that Fluoxetine inhibits cytokine release, we see the role of Fluoxetine in the treatment of SARS-CoV-2 infected patients of risk groups. KW - SARS-CoV-2 KW - viral epidemiology KW - viral infection Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-259820 VL - 11 ER - TY - JOUR A1 - Bold, Kevin A1 - Stolte, Matthias A1 - Shoyama, Kazutaka A1 - Krause, Ana‐Maria A1 - Schmiedel, Alexander A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Würthner, Frank T1 - Macrocyclic Donor‐Acceptor Dyads Composed of Oligothiophene Half‐Cycles and Perylene Bisimides JF - Chemistry – A European Journal N2 - A series of donor‐acceptor (D−A) macrocyclic dyads consisting of an electron‐poor perylene bisimide (PBI) π‐scaffold bridged with electron‐rich α‐oligothiophenes bearing four, five, six and seven thiophene units between the two phenyl‐imide substituents has been synthesized and characterized by steady‐state UV/Vis absorption and fluorescence spectroscopy, cyclic and differential pulse voltammetry as well as transient absorption spectroscopy. Tying the oligothiophene strands in a conformationally fixed macrocyclic arrangement leads to a more rigid π‐scaffold with vibronic fine structure in the respective absorption spectra. Electrochemical analysis disclosed charged state properties in solution which are strongly dependent on the degree of rigidification within the individual macrocycle. Investigation of the excited state dynamics revealed an oligothiophene bridge size‐dependent fast charge transfer process for the macrocyclic dyads upon PBI subunit excitation. KW - donor-acceptor dyad KW - macrocycle KW - oligothiophene KW - perylene bisimide KW - photoinduced electron transfer Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-276435 VL - 28 IS - 30 ER - TY - JOUR A1 - Schembri, Tim A1 - Kim, Jin Hong A1 - Liess, Andreas A1 - Stepanenko, Vladimir A1 - Stolte, Matthias A1 - Würthner, Frank T1 - Semitransparent Layers of Social Self‐Sorting Merocyanine Dyes for Ultranarrow Bandwidth Organic Photodiodes JF - Advanced Optical Materials N2 - Two dipolar merocyanines consisting of the same π‐conjugated chromophore but different alkyl substituents adopt very different packing arrangements in their respective solid state with either H‐ or J‐type exciton coupling, leading to ultranarrow absorption bands at 477 and 750 nm, respectively, due to exchange narrowing. The social self‐sorting behavior of these push‐pull chromophores in their mixed thin films is evaluated and the impact on morphology as well as opto‐electronical properties is determined. The implementation of this well‐tuned two‐component material with tailored optical features allows to optimize planar heterojunction organic photodiodes with fullerene ​(C\(_{60}\)) with either dual or single wavelength selectivity in the blue and NIR spectral range with ultranarrow bandwidths of only 11 nm (200 cm\(^{-1}\)) and an external quantum efficiency of up to 18% at 754 nm under 0 V bias. The application of these photodiodes as low‐power consuming heart rate monitors is demonstrated by a reflectance‐mode photoplethysmography (PPG) sensor. KW - exciton coupling KW - merocyanine dyes/pigments KW - narrow bandwidth KW - organic photodiodes KW - social self‐sorting Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-244762 VL - 9 IS - 15 ER - TY - JOUR A1 - Stolte, Matthias A1 - Hecht, Reinhard A1 - Xie, Zengqi A1 - Liu, Linlin A1 - Kaufmann, Christina A1 - Kudzus, Astrid A1 - Schmidt, David A1 - Würthner, Frank T1 - Crystal Engineering of 1D Exciton Systems Composed of Single‐ and Double‐Stranded Perylene Bisimide J‐Aggregates JF - Advanced Optical Materials N2 - Single crystals of three at bay area tetraphenoxy‐substituted perylene bisimide dyes are grown by vacuum sublimation. X‐ray analysis reveals the self‐assembly of these highly twisted perylene bisimides (PBIs) in the solid state via imide–imide hydrogen bonding into hydrogen‐bonded PBI chains. The crystallographic insights disclose that the conformation and sterical congestion imparted by the phenoxy substituents can be controlled by ortho‐substituents. Accordingly, whilst sterically less demanding methyl and isopropyl substituents afford double‐stranded PBI chains of complementary P and M atropo‐enantiomers, single hydrogen‐bonded chains of homochiral PBIs are observed for the sterically more demanding ortho‐phenyl substituents. Investigation of the absorption and fluorescence properties of microcrystals and thin films of these PBIs allow for an unambiguous interpretation of these exciton systems. Thus, the J‐aggregates of the double‐stranded crystals exhibit a much larger (negative) exciton coupling than the single‐stranded one, which in contrast has the higher solid‐state fluorescence quantum yield. KW - fluorescence KW - J‐aggregates KW - perylene bisimides KW - reabsorption KW - single crystal structure Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218221 VL - 8 IS - 18 ER - TY - JOUR A1 - Scheitl, Carolin P. M. A1 - Okuda, Takumi A1 - Adelmann, Juliane A1 - Höbartner, Claudia T1 - Ribozyme-catalyzed late-stage functionalization and fluorogenic labeling of RNA JF - Angewandte Chemie International Edition N2 - Site-specific introduction of biorthogonal handles into RNAs is in high demand for decorating RNAs with fluorophores, affinity labels or other modifications. Aldehydes represent attractive functional groups for post-synthetic bioconjugation reactions. Here, we report a ribozyme-based method for the synthesis of aldehyde-functionalized RNA by directly converting a purine nucleobase. Using the methyltransferase ribozyme MTR1 as an alkyltransferase, the reaction is initiated by site-specific N1 benzylation of purine, followed by nucleophilic ring opening and spontaneous hydrolysis under mild conditions to yield a 5-amino-4-formylimidazole residue in good yields. The modified nucleotide is accessible to aldehyde-reactive probes, as demonstrated by the conjugation of biotin or fluorescent dyes to short synthetic RNAs and tRNA transcripts. Upon fluorogenic condensation with a 2,3,3-trimethylindole, a novel hemicyanine chromophore was generated directly on the RNA. This work expands the MTR1 ribozyme’s area of application from a methyltransferase to a tool for site-specific late-stage functionalization of RNA. KW - Aldehyde Bioconjugation KW - Bioorthogonal Tag KW - Fluorescence and Crosslinking KW - RNA Labelling KW - Ribozyme Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-327543 VL - 62 ER - TY - THES A1 - Mut, Jürgen T1 - Synthese komplexer funktionaler Mono- und Oligosaccharid-Bausteine zur Untersuchung und Modifikation von Membranoberflächen humaner mesenchymaler Stromazellen T1 - Synthesis of complex functional mono- and oligosaccharide components for the investigation and modification of membrane surfaces of human mesenchymal stromal cells N2 - Bei der Biofabrikation werden Zellen mit einem Biomaterial versetzt (vereint werden diese als Biotinte definiert) und durch additive Fertigungsmethoden wie dem 3D-Druck zu hierarchischen Strukturen aufgebaut. Zur Herstellung von künstlichen Gewebe und zukünftig auch von funktionalen Organen ist ein detailliertes Zellverständnis essentiell. Im Rahmen dieser Dissertation wurden Systeme generiert, um die Zellmembranen von mesenchymalen Stromazellen gezielt zu verändern und um die Modifikationen zu charakterisieren. Durch Inkubation mit unnatürlichen Zuckern werden diese von Zellen aufgenommen und in den Zellmetabolismus eingeschleust und auf die Glycoproteine übertragen. Diese Methode ist als metabolic glycoengineering bekannt. Dazu wurden diverse humane Saccharid-Analoga mit bioorthogonalen Gruppen (Azid oder Alkin) synthetisiert. Alle in dieser Arbeit vorgestellten Moleküle wurden NMR-spektroskopisch als auch massenspektrometrisch charakterisiert. Die acetylierten Mannosamin-Derivate konnten über zwei Stufen und die Sialinsäure-Derivate über sechs Stufen synthetisiert werden. Sialinsäuren sind die terminalen Zucker an Glycanketten von Proteinen mit wichtigen biologischen Funktionen. Im Rahmen des SFB TRR225 konnte in Kooperation mit der Gruppe von Prof. Dr. R. Ebert der Einbau der Saccharide in mesenchymalen Stromazellen durch Fluoreszenzmikroskopie evaluiert werden. Aufgrund des effizienteren Einbaus der Sialinsäure mit Alkingruppe gegenüber der mit Azidgruppe, wurde dieser in den folgenden massenspektrometrischen Analysen eingesetzt. Die Messungen der markierten Glycoproteine wurden von Dr. Marc Driessen durchgeführt und der metabolische Einbau von SiaNAl und Ac4ManNAl in den Stromazellen gegenübergestellt. 55 Glycoproteine konnten durch SiaNAl und 94 durch Ac4ManNAl charakterisiert werden. Ein Abgleich der Proteindatenbanken eine Anreicherung von Proteine durch Fütterung von SiaNAl die in Signaltransduktion, Zellkontakte und Differenzierung involviert sind, womit metabolic glycoengineering prinzipiell zur Optimierung von Biofabrikationsprozessen genutzt werden kann. N2 - In the field of biofabrication, cells are mixed with biomaterials (forming bioinks) to produce hierarchical structures using additive manufacturing such as 3D printing. A detailed understanding of cells is crucial for the production of artificial tissue and, in the future, also of functional organs. In this work, systems were generated to specifically modify the cell membranes of mesenchymal stromal cells. Unnatural saccharides are introduced into the cell metabolism during incubation and transferred onto extra- and intracellular glycoproteins. This method is known as metabolic glycoengineering. For this purpose, various human saccharide analogues with a bioorthogonal group (azide or alkyne) were synthesised. All molecules presented in this work were characterised by NMR spectroscopy and mass spectrometry. Acetylated mannosamine and sialic acid derivatives were synthesised over two and six steps, respectively. Sialic acid is the terminal saccharide in complex glycan chains of proteins and mediates biological functions. The incorporation of the synthetic saccharides in mesenchymal stromal cells were evaluated by fluorescence microscopy in cooperation with the research group of Prof. Dr. R. Ebert (within the framework SFB TRR225). The alkyne variant displayed a more efficient incorporation and was chosen for the following mass spectrometric analysis. Therefore, lysates from stromal cells incubated with SiaNAl or Ac4ManNAl were measured by Dr. Marc Driessen. 55 and 94 glycoproteins were identified using SiaNAl and Ac4ManNAl, respectively. A comparison of protein databases indicated an enrichment for SiaNAl labelled proteins involved in signal transduction, cell junction and differentiation and thus metabolic glycoengineering can be used to optimize biofabrication processes. This hypothesis was also investigated by measuring the cell stiffness and the correlating protection from shear stress of modified cells with the research group of Prof. Dr. B. Fabry. These experiments showed a tendency to increase the stiffness, but the results could not be reproduced. A synthetic galectin-1 ligand was used as modification of the cell membrane. KW - Glykane KW - Organische Synthese KW - Galectine KW - Kohlenhydrate KW - Polysaccharide Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-320654 ER - TY - JOUR A1 - Eder, Sascha A1 - Hollmann, Claudia A1 - Mandasari, Putri A1 - Wittmann, Pia A1 - Schumacher, Fabian A1 - Kleuser, Burkhard A1 - Fink, Julian A1 - Seibel, Jürgen A1 - Schneider-Schaulies, Jürgen A1 - Stigloher, Christian A1 - Beyersdorf, Niklas A1 - Dembski, Sofia T1 - Synthesis and characterization of ceramide-containing liposomes as membrane models for different T cell subpopulations JF - Journal of Functional Biomaterials N2 - A fine balance of regulatory (T\(_{reg}\)) and conventional CD4\(^+\) T cells (T\(_{conv}\)) is required to prevent harmful immune responses, while at the same time ensuring the development of protective immunity against pathogens. As for many cellular processes, sphingolipid metabolism also crucially modulates the T\(_{reg}\)/T\(_{conv}\) balance. However, our understanding of how sphingolipid metabolism is involved in T cell biology is still evolving and a better characterization of the tools at hand is required to advance the field. Therefore, we established a reductionist liposomal membrane model system to imitate the plasma membrane of mouse T\(_{reg}\) and T\(_{conv}\) with regards to their ceramide content. We found that the capacity of membranes to incorporate externally added azide-functionalized ceramide positively correlated with the ceramide content of the liposomes. Moreover, we studied the impact of the different liposomal preparations on primary mouse splenocytes in vitro. The addition of liposomes to resting, but not activated, splenocytes maintained viability with liposomes containing high amounts of C\(_{16}\)-ceramide being most efficient. Our data thus suggest that differences in ceramide post-incorporation into T\(_{reg}\) and T\(_{conv}\) reflect differences in the ceramide content of cellular membranes. KW - liposome KW - ceramide KW - cell membrane model Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286130 SN - 2079-4983 VL - 13 IS - 3 ER - TY - JOUR A1 - Wildervanck, Martijn J. A1 - Hecht, Reinhard A1 - Nowak-Król, Agnieszka T1 - Synthesis and strong solvatochromism of push-pull thienylthiazole boron complexes JF - Molecules N2 - The solvatochromic behavior of two donor-π bridge-acceptor (D-π-A) compounds based on the 2-(3-boryl-2-thienyl)thiazole π-linker and indandione acceptor moiety are investigated. DFT/TD-DFT calculations were performed in combination with steady-state absorption and emission measurements, along with electrochemical studies, to elucidate the effect of two different strongly electron-donating hydrazonyl units on the solvatochromic and fluorescence behavior of these compounds. The Lippert–Mataga equation was used to estimate the change in dipole moments (Δµ) between ground and excited states based on the measured spectroscopic properties in solvents of varying polarity with the data being supported by theoretical studies. The two asymmetrical D-π-A molecules feature strong solvatochromic shifts in fluorescence of up to ~4300 cm\(^{−1}\) and a concomitant change of the emission color from yellow to red. These changes were accompanied by an increase in Stokes shift to reach values as large as ~5700–5800 cm\(^{−1}\). Quantum yields of ca. 0.75 could be observed for the N,N-dimethylhydrazonyl derivative in nonpolar solvents, which gradually decreased along with increasing solvent polarity, as opposed to the consistently reduced values obtained for the N,N-diphenylhydrazonyl derivative of up to ca. 0.20 in nonpolar solvents. These two push–pull molecules are contrasted with a structurally similar acceptor-π bridge-acceptor (A-π-A) compound. KW - solvatochromism KW - donor–acceptor KW - fluorescence KW - hydrazone KW - Lippert–Mataga plot KW - push–pull thienylthiazole KW - tetracoordinated boron Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286186 SN - 1420-3049 VL - 27 IS - 17 ER - TY - THES A1 - Menekşe, Kaan T1 - Fabrication of Organic Solar Cells, Screening of Non-Fullerene Acceptors and the Investigation of their Intermolecular Interactions T1 - Herstellung von organischen Solarzellen, Screening von Nicht-Fulleren-Akzeptoren und die Untersuchung ihrer intermolekularen Wechselwirkungen N2 - In this thesis, intermolecular acceptor-acceptor interactions in organic solar cells based on new non-fullerene acceptors are addressed. For this purpose, first the reproducibility of organic electronic devices was tested on a new facility for their fabrication. This was followed by the screening for new acceptor materials. Based on this, three molecular systems were investigated with regard to their acceptor-acceptor interactions and their influence on solar cell efficiency. N2 - In der vorliegenden Doktorarbeit werden zwischenmolekulare Akzeptor-Akzeptor Wechselwirkungen in organischen Solarzellen auf Basis von neuen nichtfulleren Akzeptoren behandelt. Dazu wurde zuerst die Reproduzierbarkeit von organischen Bauteilelementen an einer neuen Anlage zur Fertigung ebendieser getestet. Anschließend erfolgte die Suche nach neuen Akzeptormaterialien. Darauf aufbauend wurden drei Molekülsysteme hinsichtlich ihrer Akzeptor-Akzeptor Wechselwirkungen und deren Einfluss auf die Solarzelleneffizienz untersucht. KW - Organische Solarzelle KW - Nicht-Fulleren Akzeptor KW - Non-Fullerene Acceptor KW - Intermolekulare Wechselwirkungen KW - Intermolecular Interactions Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-291124 ER - TY - INPR A1 - Saal, Fridolin A1 - Swain, Asim A1 - Schmiedel, Alexander A1 - Holzapfel, Marco A1 - Lambert, Christoph A1 - Ravat, Prince T1 - Push-Pull [7]Helicene Diimide: Excited-State Charge Transfer and Solvatochromic Circularly Polarised Luminescence N2 - In this communication we describe a helically chiral push-pull molecule named 9,10-dimethoxy-[7]helicene diimide, displaying fluorescence (FL) and circularly polarised luminescence (CPL) over nearly the entire visible spectrum dependent on solvent polarity. The synthesised molecule exhibits an unusual solvent polarity dependence of FL quantum yield and nonradiative rate constant, as well as remarkable gabs and glum values along with high configurational stability. KW - Helicene diimide Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-345207 UR - https://doi.org/10.1039/D3CC04470J ET - submitted version ER - TY - THES A1 - Scheitl, Carolin P. M. T1 - In vitro selected ribozymes for RNA methylation and labeling T1 - In vitro selektierte Ribozyme für Methylierung und Markierung von RNA N2 - The focus of this work was the development and application of highly efficient RNA catalysts for the site-specific modification of RNA with special focus on methylation. In the course of this thesis, the first methyltransferase ribozyme (MTR1), which uses m6G as the methyl group donor was developed and further characterized. The RNA product was identified as the natural modification m1A. X-Ray crystallography was used to solve the 3D structure of the ribozyme, which directly suggested a plausible reaction meachnism. The MTR1 ribozyme was also successfully repurposed for a nucleobase transformation reaction of a purine nucleoside. This resulted in a formyl-imidazole moiety directly on the intact RNA, which was directly used for further bioconjugation reactions. Finally, additional selections and reselections led to the identification of highly active alkyltransferase ribozymes that can be used for the labeling of various RNA targets N2 - Der Schwerpunkt dieser Arbeit lag auf der Entwicklung sowie Anwendung hocheffizienter RNA-Katalysatoren für die positionsspezifische Modifikation von RNA mit besonderem Fokus auf Methylierungen. Im Rahmen dieser Arbeit wurde das erste Methyltransferase-Ribozym (MTR1), das m6G als Methylgruppendonor verwendet, entwickelt und näher charakterisiert. Das RNA-Produkt wurde als die natürliche Modifikation m1A identifiziert. Mit Hilfe der Röntgenkristallographie wurde des Weiteren die 3D-Struktur des Ribozyms aufgeklärt, was direkt auf ein plausibles Reaktionsmuster schließen ließ. Das MTR1-Ribozym wurde zudem erfolgreich für eine Nukleobasen-Transformationsreaktion eines Purins verwendet, bei der eine Formyl-Imidazol-Einheit direkt an der intakten RNA gebildet wird. Dieses Reaktionsprodukt wurde für positionsgenaue Biokonjugationsreaktionen verwendet. Schließlich führten zusätzliche Selektionen und weitere Reselektionen zur Identifizierung hochaktiver Alkyltransferase-Ribozyme, die für die Markierung verschiedener Ziel-RNAs verwendet werden können. KW - RNA labeling KW - Methyltransferase KW - Methylierung KW - Ribozym KW - SELEX Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-330049 ER - TY - THES A1 - Sánchez Naya, Roberto T1 - Synthesis and Characterization of Dye-Containing Covalent Organic Frameworks T1 - Synthese und Charakterisierung von farbstoffhaltigen kovalenten organischen Netzwerken N2 - The present thesis adress the synthesis and characterization of novel COFs that contain dye molecules as integral components of the organic backbone. These chromophore-containing frameworks open new research lines in the field and call for the exploration of applications such as catalysis, sensing, or in optoelectronic devices. Initially, the fabrication of organic-inorganic composites by the growth of DPP TAPP COF around functionalized iron oxide nanoparticles is reported. By varying the ratio between inorganic nanoparticles and organic COFs, optoelectronic properties of the materials are adjusted. The document also reports the synthesis of a novel boron dipyrromethene-containing (BODIPY) COF. Synthesis, full characterization and the scope of potential applications with a focus on environmental remediation are discussed in detail. Last, a novel diketopyrrolopyrrole-containing (DPP) DPP-Py-COF based on the combination of DDP and pyrene building blocks is presented. The very low bandgap of these materials and initial investigations on the photosensitizing properties are discussed. N2 - Die Forschung an modernen porösen Materialien hat die Entwicklung von COFs als robuste, leichtgewichtige, hochgeordnete und vielseitig einsetzbare organische Materialien vorangetrieben. Der Einsatz von DCC ist entscheidend für den Aufbau hochkristalliner Netzwerke, die in der Lage sind, strukturelle Defekte selbst zu heilen (Kapitel 2.2). Für die einfache Bildung wohldefinierter Kristallite wurden verschiedene synthetische Strategien entwickelt (Kapitel 2.3). Darüber hinaus ist ein detailliertes Verständnis über die verschiedenen Reaktionen, die für die kovalente Verknüpfung organischer Bausteine eingesetzt werden (Kapitel 2.4), und der verschiedenen Topologien, die sich nach der Vernetzung ergeben (Kapitel 2.5), von grundlegender Bedeutung für die Entwicklung einer breiten Auswahl von Materialien für gezielte Anwendungen. ... KW - Organische Chemie KW - Porosität KW - Covalent Organic Framework KW - Reticular Chemistry KW - Dye KW - Porous Materials Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288996 ER - TY - JOUR A1 - Lambov, Martin A1 - Hensiek, Nicola A1 - Pöppler, Ann‐Christin A1 - Lehmann, Matthias T1 - Columnar Liquid Crystals from Star‐Shaped Conjugated Mesogens as Nano‐Reservoirs for Small Acceptors JF - ChemPlusChem N2 - Shape‐persistent conjugated mesogens with oligothiophene arms of different lengths have been synthesized. Such mesogens possess free intrinsic space between their conjugated arms. They form columnar liquid‐crystalline phases, in which the void is filled by dense helical packing in the neat phase similar to an oligo(phenylene vinylene) derivative of equal size. The void can also be compensated by the inclusion of the small acceptor molecule 2,4,7‐trinitrofluorenone. In solution, the acceptor interacts with the core as the largest π‐surface, while in the solid material, it is incorporated between the arms and sandwiched by the star‐shaped neighbours along the columnar assemblies. The TNF acceptors are not nanosegregated from the star‐shaped donors, thus the liquid crystal structure converts to a nano‐reservoir for TNF (endo‐receptor). These host–guest arrangements are confirmed by comprehensive X‐ray scattering experiments and solid‐state NMR spectroscopy. This results in ordered columnar hexagonal phases at high temperatures, which change to helical columnar mesophases or to columnar soft crystals at room temperature. KW - donor-acceptor interactions KW - host-guest systems KW - intrinsic free space KW - liquid crystals KW - mesogens Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218014 VL - 85 IS - 10 SP - 2219 EP - 2229 ER - TY - JOUR A1 - Geiger, Nina A1 - Kersting, Louise A1 - Schlegel, Jan A1 - Stelz, Linda A1 - Fähr, Sofie A1 - Diesendorf, Viktoria A1 - Roll, Valeria A1 - Sostmann, Marie A1 - König, Eva-Maria A1 - Reinhard, Sebastian A1 - Brenner, Daniela A1 - Schneider-Schaulies, Sibylle A1 - Sauer, Markus A1 - Seibel, Jürgen A1 - Bodem, Jochen T1 - The acid ceramidase is a SARS-CoV-2 host factor JF - Cells N2 - SARS-CoV-2 variants such as the delta or omicron variants, with higher transmission rates, accelerated the global COVID-19 pandemic. Thus, novel therapeutic strategies need to be deployed. The inhibition of acid sphingomyelinase (ASM), interfering with viral entry by fluoxetine was reported. Here, we described the acid ceramidase as an additional target of fluoxetine. To discover these effects, we synthesized an ASM-independent fluoxetine derivative, AKS466. High-resolution SARS-CoV-2–RNA FISH and RTqPCR analyses demonstrate that AKS466 down-regulates viral gene expression. It is shown that SARS-CoV-2 deacidifies the lysosomal pH using the ORF3 protein. However, treatment with AKS488 or fluoxetine lowers the lysosomal pH. Our biochemical results show that AKS466 localizes to the endo-lysosomal replication compartments of infected cells, and demonstrate the enrichment of the viral genomic, minus-stranded RNA and mRNAs there. Both fluoxetine and AKS466 inhibit the acid ceramidase activity, cause endo-lysosomal ceramide elevation, and interfere with viral replication. Furthermore, Ceranib-2, a specific acid ceramidase inhibitor, reduces SARS-CoV-2 replication and, most importantly, the exogenous supplementation of C6-ceramide interferes with viral replication. These results support the hypotheses that the acid ceramidase is a SARS-CoV-2 host factor. KW - SARS-CoV-2 KW - ceramides KW - ceramidase KW - fluoxetine KW - acid sphingomyelinase Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286105 SN - 2073-4409 VL - 11 IS - 16 ER - TY - JOUR A1 - Okuda, Takumi A1 - Lenz, Ann-Kathrin A1 - Seitz, Florian A1 - Vogel, Jörg A1 - Höbartner, Claudia T1 - A SAM analogue-utilizing ribozyme for site-specific RNA alkylation in living cells JF - Nature Chemistry N2 - Post-transcriptional RNA modification methods are in high demand for site-specific RNA labelling and analysis of RNA functions. In vitro-selected ribozymes are attractive tools for RNA research and have the potential to overcome some of the limitations of chemoenzymatic approaches with repurposed methyltransferases. Here we report an alkyltransferase ribozyme that uses a synthetic, stabilized S-adenosylmethionine (SAM) analogue and catalyses the transfer of a propargyl group to a specific adenosine in the target RNA. Almost quantitative conversion was achieved within 1 h under a wide range of reaction conditions in vitro, including physiological magnesium ion concentrations. A genetically encoded version of the SAM analogue-utilizing ribozyme (SAMURI) was expressed in HEK293T cells, and intracellular propargylation of the target adenosine was confirmed by specific fluorescent labelling. SAMURI is a general tool for the site-specific installation of the smallest tag for azide-alkyne click chemistry, which can be further functionalized with fluorophores, affinity tags or other functional probes. KW - Alkyltransferase Ribozyme SAMURI KW - Site-specific RNA labelling KW - bioorthogonal SAM analogue ProSeDMA KW - Chemical modification KW - RNA Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-328762 ER - TY - THES A1 - Fink, Julian T1 - Synthese von molekularen Werkzeugen zur Visualisierung und Untersuchung des Sphingolipidmetabolismus und weiterer biologischer Prozesse T1 - Synthesis of molecular tools to visualize and study sphingolipid metabolism and other biological processes N2 - Die Zelle stellt die kleinste Einheit des Lebens dar und zeichnet sich durch die hoch koordinierte Anordnung von mehreren Millionen (Bio-)Molekülen zu einem mikrometergroßen Objekt aus. Als struktureller Bestandteil der Lipiddoppelschicht eukaryotischer Zellen spielt neben Sterolen und Glycerolipiden die Verbindungsklasse der Sphingolipide eine zentrale Rolle bei der Aufrechterhaltung der Membranintegrität.[472] Darüber hinaus sind bioaktive Sphingolipide bei vielen grundlegenden zellulären Prozessen wie Apoptose, Wachstum, Differenzierung, Migration und Adhäsion entscheidend beteiligt.[87,120] Ein gestörtes Gleichgewicht des Sphingolipidmetabolismus und Defekte der entsprechenden Stoffwechselwege stehen im Zusammenhang mit vielen Krankheiten wie Krebs, Diabetes, Adipositas, Arteriosklerose, chronischen Entzündungen und Autoimmunerkrankungen sowie viraler und bakterieller Pathogenese.[22,143,473,474] Die Entwicklung und Anwendung von Sphingolipidanaloga als potenzielle Wirkstoffe rückten in den letzten Jahren immer weiter in den Fokus der interdisziplinären Forschung von Biologen, Chemikern und Medizinern. Als bekanntestes Beispiel ist Fingolimod (FTY720) zu nennen, das als Sphingosin-1-phosphat-Mimetikum heute unter dem Markennamen Gilenya® erfolgreich als Arzneistoff zur Behandlung von Multipler Sklerose eingesetzt wird.[475] Es besteht jedoch die Gefahr, dass Fingolimod zur Schädigung anderer Zellfunktionen und zu gravierenden Nebeneffekten wie Bradykardie führen kann.[476] Da Sphingolipide ebenfalls in der Kontrolle von bakteriellen und viralen Infektionen essentiell beteiligt sind, spielen Sphingolipide und deren synthetisch dargestellte Derivate vermehrt eine Rolle in der Wirkstoffentwicklung im Kampf gegen pathogene Krankheitserreger.[175,477-479] Die Wirkweise von antimikrobiellen Sphingolipiden ist bisher nicht vollständig aufgeklärt. Für eine Weiterentwicklung von bekannten Medikamenten gegen verschiedene Krankheiten oder für die Entwicklung neuartiger Wirkstoffe gegen Erreger ist eine umfassende Untersuchung der zugrundeliegenden zellulären Mechanismen auf molekularer Ebene entscheidend. Hierfür finden aufgrund der relativ einfachen Detektion mittels Fluoreszenzmikroskopie häufig fluoreszenzmarkierte Sphingolipidderivate breite Anwendung.[480] Die kovalent gebundene Farbstoffeinheit bringt jedoch wesentliche Nachteile mit sich, da sich die Biomoleküle durch die veränderte Struktur und Polarität in ihren biologischen Eigenschaften von den natürlichen Substraten unterscheiden können. Die Verwendung von bioorthogonal funktionalisierten Biomolekülen umgeht dieses Problem, da die strukturellen Änderungen minimal gehalten werden. Nach dem zellulären Einbau dieser Derivate ist eine schnelle und spezifische Konjugation mit einem komplementären Fluorophor zu einem gewünschten Zeitpunkt durch sogenannte Click-Reaktionen wie CuAAC oder SPAAC möglich.[12,46] Das Prinzip der Click-Chemie wurde bereits auf eine Vielzahl an Biomolekülen wie Sphingolipide, Fettsäuren, Aminosäuren, Proteine, Kohlenhydrate, Nukleoside oder Nukleinsäuren (DNA und RNA) übertragen.[47,280] Jedoch bedarf es weiterer spezifisch modifizierter Verbindungen, die vielfältige bioorthogonale Reaktionen für die Untersuchung von Zellprozessen zulassen ‒ sowohl in vitro als auch in vivo. Um neue Therapieansätze gegen verschiedene Krankheiten zu entwickeln und schwerwiegende Nebenwirkungen zu vermeiden, ist die detaillierte Erforschung hochkomplexer Zellvorgänge auf molekularer Ebene von entscheidender Bedeutung. Das Ziel dieser Arbeit war daher die Synthese und Charakterisierung von molekularen Werkzeugen, die in Kombination mit verschiedenen aktuellen Mikroskopie- und Massenspektrometriemethoden die Visualisierung und Untersuchung des Sphingolipidmetabolismus und weiterer biologischer Prozesse ermöglichen. Zusammenfassend wurde in dieser Arbeit eine Vielzahl an Sphingolipiden und deren bioorthogonal funktionalisierte Analoga ausgehend von der Aminosäure L-Serin erfolgreich synthetisiert. Die vorgestellten Verbindungen eignen sich in Kombination mit Massenspektrometrie und Fluoreszenz- oder Elektronenmikroskopie als molekulare Werkzeuge zur Untersuchung des komplexen Sphingolipidmetabolismus sowie des Einbaus und der Dynamik von Sphingolipiden in Modell- und Zellmembranen. Sowohl in humanen und tierischen Zellen als auch in Bakterien wurden die azidmodifizierten Sphingolipide durch Click-Reaktionen visualisiert, um ein verbessertes Verständnis von bakteriellen und viralen Infektionsprozessen zu erhalten. Der modulare Ansatz der Click-Chemie ermöglicht die Verwendung verschiedener komplementär funktionalisierter Farbstoffe, die unterschiedliche Eigenschaften bezüglich der Membrandurchgängigkeit oder Absorptions- und Emissionswellenlängen besitzen und somit je nach biologischer Fragestellung gezielt eingesetzt werden können. Alles in allem tragen die in dieser Arbeit synthetisierten Verbindungen dazu bei, die Rolle von Sphingolipiden bei Infektionsprozessen und Krankheitsverläufen auf subzellulärer Ebene aufzuklären. Dadurch wird ein entscheidender Beitrag für die Entwicklung neuartiger Wirkstoffe gegen bakterielle oder virale Erreger sowie innovativer Therapien gegen verschiedene humane Krankheiten geliefert. N2 - The cell represents the smallest unit of life and is characterized by the highly coordinated arrangement of several million (bio)molecules to form a micrometer-sized object. As a structural component of the lipid bilayer of eukaryotic cells, in addition to sterols and glycerophospholipids, the compound class of sphingolipids plays a central role in maintaining membrane integrity.[472] In addition, bioactive sphingolipids are critically involved in many basic cellular processes such as apoptosis, growth, differentiation, migration and adhesion.[87,120] A disturbed balance of the sphingolipid metabolism and defects in the corresponding metabolic pathways are associated with many diseases such as cancer, diabetes, obesity, arteriosclerosis, chronic inflammation and autoimmune diseases as well as viral and bacterial pathogenesis.[22,143,473,474] The development and application of sphingolipid analogues as potential active ingredients have moved more and more into the focus of interdisciplinary research by biologists, chemists and medical professionals in recent years. The best-known example is fingolimod (FTY720), which is now successfully used as a sphingosine-1-phosphate mimetic under the brand name Gilenya® as a drug for the treatment of multiple sclerosis.[475] However, there is a risk that fingolimod can damage other cell functions and lead to serious side effects such as bradycardia.[476] Since sphingolipids are also essential for the control of bacterial and viral infections, sphingolipids and their synthetically produced derivatives are playing an increasing a role in the development of active ingredients in the fight against pathogenic germs.[175,477-479] The mode of action of antimicrobial sphingolipids has not yet been fully elucidated. A comprehensive investigation of the underlying cellular mechanisms at the molecular level is crucial for further development of known drugs against various diseases or for the development of novel active substances against pathogens. Due to the relatively easy detection by fluorescence microscopy, fluorescence-labeled sphingolipid derivatives are widely used for this purpose.[480] However, the covalently bonded dye unit has significant disadvantages since the biological properties of the biomolecules can differ from the natural substrates concerning structure and polarity changes. The usage of bioorthogonally functionalized biomolecules avoids this problem because the structural changes are kept to a minimum. After the cellular incorporation of these derivatives, rapid and specific conjugation with a complementary fluorophore at a desired point of time is possible by so-called click reactions such as CuAAC or SPAAC.[12,46] The concept of click chemistry has already been applied to a large number of biomolecules such as sphingolipids, fatty acids, amino acids, proteins, carbohydrates, nucleosides or nucleic acids (DNA and RNA).[47,280] However, further specifically modified compounds are required, allowing diverse bioorthogonal reactions for the investigation of cell processes – both in vitro and in vivo. In order to develop new therapeutic approaches against numerous diseases and to avoid serious side effects, detailed research into highly complex cell processes at the molecular level is of crucial importance. Therefore, the aim of this work was the synthesis and characterization of molecular tools which, in combination with several current microscopy and mass spectrometry methods, enable the visualization and investigation of the sphingolipid metabolism and other biological processes. In summary, a variety of sphingolipids and their bioorthogonally functionalized analogues were successfully synthesized in this work starting from the amino acid L-serine. In combination with mass spectrometry and fluorescence or electron microscopy, the presented compounds are suitable as molecular tools for the investigation of the complex sphingolipid metabolism as well as the incorporation and dynamics of sphingolipids in model and cell membranes. The azide-modified sphingolipids were visualized by click reactions in human and animal cells as well as in bacteria to gain a better understanding of bacterial and viral infection processes. The modular approach of click chemistry enables the use of different complementarily functionalized dyes that have different properties in terms of membrane permeability or absorption and emission wavelengths and can therefore be used in a targeted manner depending on the biological issue. All in all, the compounds synthesized in this work help to elucidate the role of sphingolipids in infection processes and disease progression at subcellular level. This makes a decisive contribution to the development of novel active substances against bacterial or viral pathogens as well as of innovative therapies against various human diseases. KW - Chemische Synthese KW - Sphingolipide KW - Click-Chemie KW - Organische Synthese KW - Sphingolipidderivate KW - bioorthogonale Markierung KW - Wirkstoffentwicklung KW - Infektionsprozesse KW - Sphingolipidanaloga KW - Sphingolipidstoffwechsel Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286992 ER - TY - THES A1 - Mahlmeister, Bernhard T1 - Twisted Rylene Bisimides for Organic Solar Cells and Strong Chiroptical Response in the Near Infrared T1 - Kernverdrillte Rylenbisimide für organische Solarzellen und starke chirooptische Eigenschaften im Nahinfrarot N2 - The chirality of the interlocked bay-arylated perylene motif is investigated upon its material prospect and the enhancement of its chiroptical response to the NIR spectral region. A considerable molecular library of inherently chiral perylene bisimides (PBIs) was utilized as acceptors in organic solar cells to provide decent device performances and insights into the structure-property relationship of PBI materials within a polymer blend. For the first time in the family of core-twisted PBIs, the effects of enantiopurity on the device performance was thoroughly investigated. The extraordinary structural sensitivity of CD spectroscopy served as crucial analytical tool to bridge the highly challenging gap between molecular properties and device analytics by proving the excitonic chirality of a helical PBI dimer. The chirality of this perylene motif could be further enhanced on a molecular level by both the expansion and the enhanced twisting of the π-scaffold to achieve a desirable strong chiroptical NIR response introducing a new family of twisted QBI-based nanoribbons. These achievements could be substantially further developed by expanding this molecular concept to a supramolecular level. The geometrically demanding supramolecular arrangement necessary for the efficient excitonic coupling was carefully encoded into the molecular design. Accordingly, the QBIs could form the first J-type aggregate constituting a fourfold-stranded superhelix of a rylene bisimide with strong excitonic chirality. Therefore, this thesis has highlighted the mutual corroboration of experimental and theoretical data from the molecular to the supramolecular level. It has demonstrated that for rylene bisimide dyes, the excitonic contribution to the overall chiroptical response can be designed and rationalized. This can help to pave the way for new organic functional materials to be used for chiral sensing or chiral organic light-emitting devices. N2 - Die Chiralität des verzahnten Bucht-arylierten Perylenmotivs wurde im Hinblick auf seine Materialanwendung sowie die Verstärkung seiner chiroptischen Eigenschaften im NIR-Spektralbereich untersucht. Eine umfangreiche Molekülbibliothek von inhärent chiralen PBIs wurde als NFAs in OSCs verwendet, um sowohl gute Solarzelleneffizienzen sowie Einblicke in die Struktur-Eigenschafts-Beziehung von PBI Materialien innerhalb einer Polymermischung zu erhalten. Zum ersten Mal wurden für kernverdrillte PBIs die Auswirkungen der Enantiomerenreinheit auf die Effizienz von organischen Dünnfilmbauteilen untersucht. Die außerordentliche strukturelle Empfindlichkeit der CD Spektroskopie diente als entscheidendes Analysewerkzeug, um die hoch anspruchsvolle Lücke zwischen der Analytik molekularer Eigenschaften und der Bauteilanalytik zu schließen, indem die exzitonische Chiralität eines helikalen PBI-Dimers nachgewiesen wurde. Die Chiralität dieses Perylenmotivs konnte auf molekularer Ebene weiter verstärkt werden, indem das π-Gerüst sowohl erweitert als auch stärker verdrillt wurde, um wünschenswert starke chiroptische Eigenschaften im NIR-Bereich zu erzielen und so eine neue Molekülfamilie kernverdrillter QBIs zu definieren. Diese Errungenschaften konnten durch die Ausweitung dieses molekularen Konzepts auf eine supramolekulare Ebene noch erheblich weiterentwickelt werden. Die geometrisch anspruchsvolle supramolekulare Anordnung, die für die effiziente exzitonische Kopplung erforderlich ist, wurde sorgfältig in das molekulare Design kodiert. Dementsprechend stellt das präsentierte QBI in seiner vierfach versetzt gestapelten Superhelix das erste Rylenbisimid-J-Aggregat dar, welches eine starke exzitonische Chiralität zeigt. Somit hat die Arbeit hat die gegenseitige Bestätigung von experimentellen und theoretischen Daten von der molekularen bis hin zur supramolekularen Ebene herausgestellt und gezeigt, dass für Rylenbisimid-Farbstoffe der exzitonische Beitrag zu den chiroptischen Eigenschaften konzipiert, synthetisch realisiert und quantenmechanisch verstanden werden kann. Dies kann den Weg für neue organische Funktionsmaterialien ebnen, die für chirale Sensoren oder Licht emittierende Bauteile verwendet werden können. KW - Molekül KW - Chiralität KW - Exziton KW - Organische Solarzelle KW - Supramolekulare Chemie KW - organic solar cell KW - non-fullerene acceptor KW - perylene bisimide KW - quaterrylene bisimide KW - inherent chirality KW - excitonic chirality KW - supramolecular chemistry KW - self-assembly KW - near infrared chirality Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-346106 ER - TY - THES A1 - Bauer, Christian T1 - Towards ecological and efficient electrochemical energy storage in supercapacitors and sodium ion batteries using onion-like carbon T1 - Ökologische und effiziente elektrochemische Energiespeicherung in Superkondensatoren und Natriumionen-Batterien mit Kohlenstoff-Nanozwiebeln N2 - In this thesis, the usage of onion-like carbon (OLC) for energy storage applications was researched regarding sustainability, performance and processability. This work targets to increase the scientific understanding regarding the role of OLC in electrodes and to facilitate a large-scale production, which is the foundation for commercial application. Research was devoted to increase the knowledge in the particular field, to yield synergistic approaches and a shared value regarding sustainability and performance. N2 - Im Rahmen dieser Arbeit wurde die Verwendung von Onion-like Carbon (OLC) als Aktivmaterial zur Energiespeicherung untersucht. Die Arbeit zielte darauf ab, das wissenschaftliche Verständnis der Rolle von OLC im Kontext der elektrochemischen Energiespeicherung zu verbessern. Hierfür wurde an den Prozessschritten und Verfahren gearbeitet, um OLC-basierte Elektroden erfolgreich in Superkondensatoren und Pseudokondensatoren zu verwenden. Auch der Einsatz von OLC als Aktivmaterial für Natriumionenbatterien wurde erforscht, wobei sich das Material in dieser Anwendung als Aktivmaterial ungeeignet erwies. Die Bearbeitungen dieser Fragestellungen war darauf ausgerichtet, das Wissen in diesem Bereich zu erweitern, synergetische Ansätze für Problemlösungen zu finden und einen Mehrwert in Bezug auf Nachhaltigkeit, Performance und Prozessierbarkeit zu schaffen. KW - Elektrochemie KW - Chemie KW - Anode KW - Kohlenstoff KW - Superkondensator KW - OLC KW - SIB KW - PEDOT KW - Supercap Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-317956 ER - TY - INPR A1 - Seitz, Florian A1 - Jungnickel, Tina A1 - Kleiber, Nicole A1 - Kretschmer, Jens A1 - Dietzsch, Julia A1 - Adelmann, Juliane A1 - Bohnsack, Katherine E. A1 - Bohnsack, Markus T. A1 - Höbartner, Claudia T1 - Atomic mutagenesis of N\(^6\)-methyladenosine reveals distinct recognition modes by human m\(^6\)A reader and eraser proteins T2 - Journal of the American Chemical Society N2 - N\(^6\)-methyladenosine (m\(^6\)A) is an important modified nucleoside in cellular RNA associated with multiple cellular processes and is implicated in diseases. The enzymes associated with the dynamic installation and removal of m\(^6\)A are heavily investigated targets for drug research, which requires detailed knowledge of the recognition modes of m\(^6\)A by proteins. Here, we use atomic mutagenesis of m\(^6\)A to systematically investigate the mechanisms of the two human m\(^6\)A demethylase enzymes FTO and ALKBH5 and the binding modes of YTH reader proteins YTHDF2/DC1/DC2. Atomic mutagenesis refers to atom-specific changes that are introduced by chemical synthesis, such as the replacement of nitrogen by carbon atoms. Synthetic RNA oligonucleotides containing site-specifically incorporated 1-deaza-, 3-deaza-, and 7-deaza-m\(^6\)A nucleosides were prepared by solid-phase synthesis and their RNA binding and demethylation by recombinant proteins were evaluated. We found distinct differences in substrate recognition and transformation and revealed structural preferences for the enzymatic activity. The deaza m\(^6\)A analogues introduced in this work will be useful probes for other proteins in m\(^6\)A research. KW - modified nucleosides KW - N6-methyladenosine (m6A) KW - atomic mutagenesis KW - YTH reader proteins KW - demethylase enzymes FTO and ALKBH5 Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352376 ER - TY - JOUR A1 - Weh, Manuel A1 - Shoyama, Kazutaka A1 - Würthner, Frank T1 - Preferential molecular recognition of heterochiral guests within a cyclophane receptor JF - Nature Communications N2 - The discrimination of enantiomers by natural receptors is a well-established phenomenon. In contrast the number of synthetic receptors with the capability for enantioselective molecular recognition of chiral substrates is scarce and for chiral cyclophanes indicative for a preferential binding of homochiral guests. Here we introduce a cyclophane composed of two homochiral core-twisted perylene bisimide (PBI) units connected by p-xylylene spacers and demonstrate its preference for the complexation of [5]helicene of opposite helicity compared to the PBI units of the host. The pronounced enantio-differentiation of this molecular receptor for heterochiral guests can be utilized for the enrichment of the P-PBI-M-helicene-P-PBI epimeric bimolecular complex. Our experimental results are supported by DFT calculations, which reveal that the sterically demanding bay substituents attached to the PBI chromophores disturb the helical shape match of the perylene core and homochiral substrates and thereby enforce the formation of syndiotactic host-guest complex structures. Hence, the most efficient substrate binding is observed for those aromatic guests, e. g. perylene, [4]helicene, phenanthrene and biphenyl, that can easily adapt in non-planar axially chiral conformations due to their inherent conformational flexibility. In all cases the induced chirality for the guest is opposed to those of the embedding PBI units, leading to heterochiral host-guest structures. KW - coordination chemistry KW - molecular capsules KW - stereochemistry Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-357750 VL - 14 ER - TY - JOUR A1 - Brenner, Daniela A1 - Geiger, Nina A1 - Schlegel, Jan A1 - Diesendorf, Viktoria A1 - Kersting, Louise A1 - Fink, Julian A1 - Stelz, Linda A1 - Schneider-Schaulies, Sibylle A1 - Sauer, Markus A1 - Bodem, Jochen A1 - Seibel, Jürgen T1 - Azido-ceramides, a tool to analyse SARS-CoV-2 replication and inhibition — SARS-CoV-2 is inhibited by ceramides JF - International Journal of Molecular Sciences N2 - Recently, we have shown that C6-ceramides efficiently suppress viral replication by trapping the virus in lysosomes. Here, we use antiviral assays to evaluate a synthetic ceramide derivative α-NH2-ω-N3-C6-ceramide (AKS461) and to confirm the biological activity of C6-ceramides inhibiting SARS-CoV-2. Click-labeling with a fluorophore demonstrated that AKS461 accumulates in lysosomes. Previously, it has been shown that suppression of SARS-CoV-2 replication can be cell-type specific. Thus, AKS461 inhibited SARS-CoV-2 replication in Huh-7, Vero, and Calu-3 cells up to 2.5 orders of magnitude. The results were confirmed by CoronaFISH, indicating that AKS461 acts comparable to the unmodified C6-ceramide. Thus, AKS461 serves as a tool to study ceramide-associated cellular and viral pathways, such as SARS-CoV-2 infections, and it helped to identify lysosomes as the central organelle of C6-ceramides to inhibit viral replication. KW - ceramides KW - SARS-CoV-2 KW - azido-ceramides KW - sphingolipids Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-313581 SN - 1422-0067 VL - 24 IS - 8 ER - TY - THES A1 - Neitz, Hermann T1 - Hydrophobic recognition motifs in functionalized DNA T1 - Hydrophobe Erkennungsmotive in funktionalisierter DNA N2 - In wässriger Umgebung spielen hydrophobe Wechselwirkungen eine wichtige Rolle für die DNA. Die Einführung von Modifikationen, die auf hydrophoben aromatischen Einheiten basieren, kann die Erkennung und Reaktivität von funktionellen Gruppen in der DNA steuern. Modifikationen können durch ein künstliches Rückgrat oder in Form einer Erweiterung der Nukleobasen eingebracht werden und so zu zusätzlichen Eigenschaften der DNA führen. Diese Dissertation befasst sich mit der Verwendung von hydrophoben Einheiten zur Funktionalisierung von DNA. Im ersten Teil der Arbeit wurde das Tolanmotiv (Diphenylacetylen) in Kombination mit dem acyclischen Rückgrat von GNA und BuNA verwendet, um Erkennungseinheiten im DNA-Kontext zu erzeugen. Die gezielte Fluorierung der aromatischen Ringe des Tolan-Bausteins bildete die Grundlage für eine supramolekulare Sprache, die auf Aren-Fluoroaren-Wechselwirkungen basiert. Die spezifische Erkennung wurde mittels thermodynamischer, kinetischer und NMR-spektroskopischer Methoden untersucht. Im zweiten Teil der Arbeit wurden Desoxyuridin-Derivate mit einer hydrophoben aromatischen Modifikation hergestellt und in die DNA-Doppelhelix eingebaut. Die Bestrahlung mit UV-Licht führte zu einer [2+2]-Cycloaddition zwischen zwei modifizierten Nukleosiden in der DNA. Das Reaktionsprodukt wurde strukturell charakterisiert und die Reaktion in verschiedenen biochemischen und nanotechnologischen DNA-Anwendungen eingesetzt. N2 - In aqueous environment, hydrophobic interactions play an important role for DNA. The introduction of modifications based on hydrophobic aromatic moieties offers additional ways for controlling recognition and reactivity of functional groups in DNA. Modifications are introduced through an artificial backbone or in the form of an extension of the nucleobases, resulting in additional properties of the DNA. This dissertation focuses on the use of hydrophobic units for the functionalization of DNA. In the first part of the work, the tolane (i. e. diphenylacetylene) motif was used in combination with the acyclic backbone of GNA and BuNA to generate recognition units in the DNA context. Fluorination of the aromatic rings in the tolane moiety provided the basis for a supramolecular language based on arene-fluoroarene interactions. The specific recognition was investigated by thermodynamic, kinetic and NMR spectroscopic methods. In the second part of the work, deoxyuridine derivatives with a hydrophobic aromatic modification were prepared and incorporated into DNA duplexes. The irradiation with UV light led to a [2+2] cycloaddition reaction between two modified nucleosides in the DNA. This reaction product was structurally characterized and the reaction was used in various biochemical and nanotechnological DNA applications. KW - Supramolekulare Chemie KW - Arene-Fluoroarene KW - Artificial Base Pair KW - Supramolecular Interaction KW - XNA KW - Crosslinking KW - DNA KW - DNS Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-348382 ER - TY - JOUR A1 - Noll, Niklas A1 - Würthner, Frank T1 - Bioinspired water preorganization in confined space for efficient water oxidation catalysis in metallosupramolecular ruthenium architectures JF - Accounts of Chemical Research N2 - Conspectus Nature has established a sustainable way to maintain aerobic life on earth by inventing one of the most sophisticated biological processes, namely, natural photosynthesis, which delivers us with organic matter and molecular oxygen derived from the two abundant resources sunlight and water. The thermodynamically demanding photosynthetic water splitting is catalyzed by the oxygen-evolving complex in photosystem II (OEC-PSII), which comprises a distorted tetramanganese–calcium cluster (CaMn\(_4\)O\(_5\)) as catalytic core. As an ubiquitous concept for fine-tuning and regulating the reactivity of the active site of metalloenzymes, the surrounding protein domain creates a sophisticated environment that promotes substrate preorganization through secondary, noncovalent interactions such as hydrogen bonding or electrostatic interactions. Based on the high-resolution X-ray structure of PSII, several water channels were identified near the active site, which are filled with extensive hydrogen-bonding networks of preorganized water molecules, connecting the OEC with the protein surface. As an integral part of the outer coordination sphere of natural metalloenzymes, these channels control the substrate and product delivery, carefully regulate the proton flow by promoting pivotal proton-coupled electron transfer processes, and simultaneously stabilize short-lived oxidized intermediates, thus highlighting the importance of an ordered water network for the remarkable efficiency of the natural OEC. Transferring this concept from nature to the engineering of artificial metal catalysts for fuel production has fostered the fascinating field of metallosupramolecular chemistry by generating defined cavities that conceptually mimic enzymatic pockets. However, the application of supramolecular approaches to generate artificial water oxidation catalysts remained scarce prior to our initial reports, since such molecular design strategies for efficient activation of substrate water molecules in confined nanoenvironments were lacking. In this Account, we describe our research efforts on combining the state-of-the art Ru(bda) catalytic framework with structurally programmed ditopic ligands to guide the water oxidation process in defined metallosupramolecular assemblies in spatial proximity. We will elucidate the governing factors that control the quality of hydrogen-bonding water networks in multinuclear cavities of varying sizes and geometries to obtain high-performance, state-of-the-art water oxidation catalysts. Pushing the boundaries of artificial catalyst design, embedding a single catalytic Ru center into a well-defined molecular pocket enabled sophisticated water preorganization in front of the active site through an encoded basic recognition site, resulting in high catalytic rates comparable to those of the natural counterpart OEC-PSII. To fully explore their potential for solar fuel devices, the suitability of our metallosupramolecular assemblies was demonstrated under (electro)chemical and photocatalytic water oxidation conditions. In addition, testing the limits of structural diversity allowed the fabrication of self-assembled linear coordination oligomers as novel photocatalytic materials and long-range ordered covalent organic framework (COF) materials as recyclable and long-term stable solid-state materials for future applications. KW - catalysts KW - catalytic activity KW - ligands KW - macrocycles KW - water oxidation KW - ruthenium Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-361232 SN - 0001-4842 VL - 57 IS - 10 ER - TY - JOUR A1 - Kirchner, Philipp H. A1 - Schramm, Louis A1 - Ivanova, Svetlana A1 - Shoyama, Kazutaka A1 - Würthner, Frank A1 - Beuerle, Florian T1 - A water-stable boronate ester cage JF - Journal of the American Chemical Society N2 - The reversible condensation of catechols and boronic acids to boronate esters is a paradigm reaction in dynamic covalent chemistry. However, facile backward hydrolysis is detrimental for stability and has so far prevented applications for boronate-based materials. Here, we introduce cubic boronate ester cages 6 derived from hexahydroxy tribenzotriquinacenes and phenylene diboronic acids with ortho-t-butyl substituents. Due to steric shielding, dynamic exchange at the Lewis acidic boron sites is feasible only under acid or base catalysis but fully prevented at neutral conditions. For the first time, boronate ester cages 6 tolerate substantial amounts of water or alcohols both in solution and solid state. The unprecedented applicability of these materials under ambient and aqueous conditions is showcased by efficient encapsulation and on-demand release of β-carotene dyes and heterogeneous water oxidation catalysis after the encapsulation of ruthenium catalysts. KW - absorption KW - hydrocarbons KW - materials KW - organic compounds KW - stability KW - boronate esters Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-361245 SN - 0002-7863 VL - 146 IS - 8 ER - TY - THES A1 - Wagenhäuser [geb. Vonhausen], Yvonne T1 - Thermodynamic Investigations on the Dimerization and Anti-Cooperative Self-Assembly of Dipolar Merocyanines T1 - Thermodynamische Untersuchungen zur Dimerisierung und anti-kooperativen Selbstassemblierung von dipolaren Merocyaninen N2 - Dipolar merocyanines are very attractive supramolecular building blocks, as they combine interesting functional properties with strong, directional intermolecular interactions. The pyridine dioxocyano-pyridine (PYOP) chromophore (Chapter 2.2), used in this thesis, stands out because of its exceptionally high ground state dipole moment (g ~ 17 D), in combination with the option to retain good solubility also in unpolar solvents, by decoration with solubilizing groups. The reliable binding motif of anti-parallel -stacking due to dipole-dipole interactions has allowed the design of molecular building blocks that form assemblies of predictable geometry. The intense unstructured charge transfer UV/Vis absorption band (eg ~ 10.7 D) is a result of the dominant contribution of the zwitterionic resonance structure which brings the PYOP chromophore just beyond the cyanine limit in solvents of low polarity (c2 = 0.60, 1,4 dioxane). The high sensitivity of the S0 – S1 UV/Vis absorption band to the environment manifests itself in a pronounced negative solvatochromism and strong H-type exciton coupling within -stacked PYOP assemblies. In accordance with the classical molecular exciton theory, an increasing hypsochromic shift of the dominant absorption band of these H aggregates can be observed as the stack size increases up to about six chromophores, where it levels out at about max ~ 440 nm (CHCl3). This allows a uniquely simple estimation of the number of interacting chromophores within the self-assembled structure from a single UV/Vis absorption spectrum of an aggregate. The defined and well investigated PYOP dimer formation was employed in this thesis to probe the applicability and limitations of concentration-, temperature-, and solvent-dependent self-assembly studies (Chapter 3). Straightforward theoretical models to evaluate datasets of concentration-, temperature-, and solvent-dependent UV/Vis absorption by nonlinear regression analysis were derived for the case of dimer formation (Chapter 2.1). Although the dimer model is well known and widely applied in literature, this detailed derivation is helpful to understand assumptions and potential problems of the different approaches for the determination of thermodynamic parameters. This helps to decide on the most appropriate method to analyse a system of interest. In this regard it should be noted that covering a large portion of the self-assembly process with the experimental data is a prerequisite for the accuracy of the analysis. Additionally, many of the insights can also be transferred to other self-assembly systems like supramolecular polymerization or host-guest interactions. The concentration-dependent analysis is the most straightforward method to investigate self-assembly equilibria. No additional assumptions, besides mass balance and mass action law, are required. Since it includes the least number of parameters (only K, if M/D are known), it is the most, or even only, reliable method, to elucidate the self-assembly mechanism of an unknown system by model comparison. To cover a large concentration range, however, the compound must be soluble enough and generally sample amounts at least in the low mg scale must be available. The temperature-dependent analysis has the advantage that all thermodynamic parameters G0, H0 and S0 can be obtained from a single sample in one automated measurement. However, the accessible temperature-range is experimentally often quite limited and dependent on the solvent. For systems which do not show the transition from monomer to aggregate in a narrow temperature range, as given for, e.g., cooperative aggregation or processes with a high entropy contribution, often not the entire self-assembly process can be monitored. Furthermore, the assumptions of temperature-independent extinction coefficients of the individual species as well as temperature-independent H0 and S0 must be met. Monte Carlo simulations of data sets demonstrated that even minor changes in experimental data can significantly impact the optimized values for H0 and S0. This is due to the redundancy of these two parameters within the model framework and even small thermochromic effects can significantly influence the results. The G0 value, calculated from H0 and S0, is, however, still rather reliable. Solvent-dependent studies can often cover the entire self-assembly process from monomeric (agg = 0) to the fully aggregated state (agg = 1). However, for dyes with strong solvatochromic effects, such as the dipolar merocyanines investigated in this thesis, the results are affected. Also, the assumption of a linear relation of the binding energy G0 and the fraction of denaturating solvent f, which is based on linear free energy relationships between G0 and the solvent polarity, can lead to errors. Especially when specific solvent effects are involved. For the evaluation of experimental data by nonlinear regression, general data analysis software can be used, where user-defined fit models and known parameters can be implemented as desired. Alternatively, multiple specialized programs for analysing self-assembly data are available online. While the latter programs are usually more user-friendly, they have the disadvantage of being a “black box” where only pre-implemented models can be used without the option for the user to adapt models or parameters for a specific system. In Chapter 3 comprehensive UV/Vis absorption datasets are presented for the dimerization of merocyanine derivative 1 in 1,4-dioxane, which allowed for the first time a direct comparison of the results derived from concentration-, temperature-, and solvent-dependent self-assembly studies. The results for the binding constant K and corresponding G0 from the concentration- and temperature-dependent analysis were in very good agreement, also in comparison to the results from ITC. For the temperature-dependent analysis, though, multiple datasets of samples with different concentration had to be evaluated simultaneously to cover a meaningful part of the self-assembly process. Furthermore, a significant dependence of the optimized parameters H0 and S0 on the wavelength chosen for the analysis was observed. This can be rationalized by the small thermochromic shifts of both the monomer and the dimer UV/Vis absorption band. The results from the solvent-dependent evaluation showed the largest deviation, as expected for the highly solvatochromic merocyanine dye. However, even here by evaluation at 491 and 549 nm the deviation for G0 was only 2.5 kJ mol1 (9%) with respect to the results from the concentration-dependent analysis (G0 = 29.1 kJ mol1). Thus, despite the strong solvatochromism of the dipolar chromophore, it can still be considered a reliable method for estimating the binding strength. Furthermore, multiple repetitions of the concentration-, temperature-, and solvent-dependent studies provided insight into the reproducibility of the results and possible sources of experimental errors. In all cases, the deviations of the results were small (G0 < 0.4 kJ mol1) and within the same range as the fit error from the nonlinear regression analysis. The insights from these studies were an important basis for the in-depth investigation of a more complex supramolecular system in Chapter 4, as a single method is often not enough to capture the full picture of a more complicated self-assembly process. To elucidate the anti-cooperative self-assembly of the chiral merocyanine 2, a combination of multiple techniques had to be applied. Solvent-dependent UV/Vis absorption studies in CH2Cl2/MCH mixtures showed the step-wise assembly of the merocyanine monomer (max(M) = 549 nm, CH2Cl2) to first a dimer (max(D) = 498 nm, CH2Cl2/MCH 15:85) by dipole-dipole interactions, and then a -stacked higher aggregate (max(H) = 477 nm, MCH), with pronounced H-type coupling. The thermodynamic evaluation of this data, however, suffered from the severe solvatochromism, especially of the monomeric species (max(M, CH2Cl2) = 549 nm, max(M, MCH) = 596 nm). Therefore, concentration-dependent studies were performed at three different temperatures (298, 323, 353 K) to elucidate the self-assembly mechanism and determine reliable thermodynamic parameters. The studies at elevated temperatures were hereby necessary, to obtain experimental data over a larger agg--range. Due to the pronounced difference in the thermodynamic driving force for dimerization and higher aggregate formation (KD/K5 = 6500) a concentration range exists in MCH where almost exclusively the dimer species of 2 is present, before further self-assembly by dispersion interactions occurs. Therefore, the data could be evaluated independently for the two self-assembly steps. The self-assembly of dimers into the higher aggregate could not be described by the isodesmic model but was fitted satisfactorily to a pentamer model. This rather small size of about ten -stacked PYOP chromophores was, furthermore, consistently indicated by AFM, VPO and DOSY NMR measurements. Based on 1D and 2D NMR data as well as the strong bisignate CD signal of the higher aggregate in combination with TD-DFT calculations, a P-helical stack is proposed as its structure. The small size can be rationalized by the anti-cooperative self-assembly mechanism and the sterical demand of the solubilizing trialkoxyphenyl and the chiral tetralin substituents. Additionally, the aliphatic shell formed by the solubilizing chains around the polar chromophore stack, can account for the exceptionally high solubility of 2 in MCH (> 15 mg mL1). These combined studies of the self-assembly process enabled the identification of suitable conditions for the investigation of fluorescence properties of the individual aggregate species. Aggregation-induced emission enhancement was observed for the almost non-emissive monomer (Fl(M) = 0.23%), which can be rationalized by the increasing rigidification within the dimer (Fl(D) = 2.3%) and the higher aggregate (Fl(H) = 4.5%). The helical chirality of the PYOP decamer stack, furthermore, gave rise to a strong CPL signal with a large glum value of 0.011. The important conclusion of this thesis is that the temperature- and solvent-dependent analyses are valid alternatives to the classical concentration-dependent analysis to determine thermodynamic parameters of self-assembly equilibria. Although, for a specific supramolecular system, one approach might be favourable over the others for a variety of reasons. The experimental limitations often demand a combination of techniques to fully elucidate a self-assembly process and to gain insights in the aggregate structure. The anti-cooperative merocyanine self-assembly, which was described here for the first time for the PYOP merocyanine 2, is no exception. Besides the interest in the merocyanine assemblies from a structural and functional point of view, the insights gained from the presented studies can also be transferred to other self-assembly systems and be a guide to find the most appropriate analysis technique. N2 - Dipolare Merocyanine sind sehr attraktive supramolekulare Bausteine, da sie interessante funktionale Eigenschaften mit starken, gerichteten zwischenmolekularen Wechselwirkungen vereinen. Der Pyridin-dioxocyano-pyridin (PYOP)-Chromophor (Kapitel 2.2), welcher in dieser Arbeit verwendet wurde, zeichnet sich durch sein besonders starkes Grundzustands-dipolmoment (g ~ 17 D) aus, in Kombination mit der Möglichkeit durch Funktionalisierung mit löslichkeitsvermittelnden Gruppen dennoch gute Löslichkeit zu bewahren. Das zuverlässige Bindungsmotiv der durch Dipol-Dipol Wechselwirkungen anti-parallel  gestapelten Merocyanine ermöglicht es, gezielt molekulare Bausteine zu entwerfen, welche sich zu Strukturen von vorhersagbarer Geometrie zusammenlagern. Der dominante Beitrag der zwitterionischen Resonanzstruktur führt zu einer intensiven, unstrukturierten Charge-Transfer UV/Vis-Absorptionsbande (eg ~ 10.7 D) und bringt den PYOP Chromophor leicht jenseits des Cyanin-Limits in unpolaren Lösungsmitteln (c2 = 0.60, 1,4-Dioxan). Die Sensitivität der S0 S1 UV/Vis-Absorptionsbande gegenüber der Umgebung zeigt sich in der ausgeprägten negativen Solvatochromie und einer starken H artigen excitonischen Kopplung in -gestapelten Aggregaten. In Übereinstimmung mit klassischer Excitonen-Theorie kann eine zunehmende hypsochrome Verschiebung der dominanten Absorptionsbande mit zunehmender Größe der H-Aggregate beobachtet werden, bis bei etwa sechs Chromophoren und max ~ 440 nm ein Plateau erreicht wird. Dies ermöglicht eine einmalig einfache Abschätzung, der Anzahl an wechselwirkenden Chromophoren innerhalb einer Aggregatstruktur, basierend auf einem einzigen UV/Vis-Absorptionsspektrum. Das definierte und gut untersuchte Beispiel des PYOP-Dimers wurde in dieser Arbeit verwendet, um die Anwendbarkeit und die Grenzen von konzentrations-, temperatur- und lösungsmittelabhängigen Aggregationsstudien auszutesten (Kapitel 3). Theoretische Modelle zur thermodynamischen Auswertung von konzentrations-, temperatur- und lösungsmittelabhängigen Studien mittels nichtlinearer Regression wurden für das Beispiel der Dimerisierung hergeleitet (Kapitel 2). Obwohl das Dimer-Modell literaturbekannt ist, ist diese detaillierte Herleitung hilfreich, um die Annahmen zu verstehen, die dem Modell zugrunde liegen. So können potenzielle Problemquellen der verschiedenen Methoden erkannt und die geeignetste Methode zur Bestimmung der thermodynamischen Parameter für ein bestimmtes System ausgewählt werden. Hierbei sollte man beachten, dass es sich für die Aussagekraft der Analyse klar als zuträglich erwiesen hat, wenn ein möglichst großer Bereich des Aggregationssprozesses von den experimentellen Daten abgedeckt werden kann. Viele der hier gewonnen Erkenntnisse lassen sich auch auf andere Systeme wie supramolekulare Polymere oder Wirt-Gast-Komplexe übertragen. Die konzentrationsabhängige Analyse ist die direkteste Methode, um ein supramolekulares Gleichgewicht zu untersuchen. Sie erfordert keine zusätzlichen Annahmen, außer dem Massenerhalt und dem Massenwirkungsgesetz. Da das konzentrationsabhängige mathematische Modell die wenigsten Parameter enthält (nur K, wenn M/D bekannt), ist es die zuverlässigste, wenn nicht sogar die einzig zuverlässige, Methode, um den Aggregationsmechanismus durch einen Vergleich der experimentellen Daten mit verschiedenen Modellen aufzuklären. Allerdings muss die zu untersuchende Verbindung hierbei löslich genug sein, damit ein großer Teil des Aggregationsprozesses in den Studien abgebildet werden kann und es werden üblicherweise Substanzmengen im niedrigen mg Bereich benötig. Die temperaturabhängige Analyse hat den Vorteil, dass alle thermodynamischen Parameter G0, H0 und S0 in einer einzigen automatisierten Messung einer einzelnen Probe erhalten werden können. Allerdings ist der experimentell zugängliche Temperaturbereich oft sehr eingeschränkt und abhängig von dem verwendeten Lösungsmittel. Für Systeme, bei denen der Übergang vom Monomer zum Aggregat nicht in einem engen Temperaturbereich erfolgt, z.B. aufgrund von Kooperativität oder einem großen Entropie-Beitrag, ist es oft nicht möglich den gesamten Aggreationsprozess abzubilden. Zusätzlich sollten die Annahmen, dass sowohl die Extinktionskoeffizienten der einzelnen Spezies sowie H0 und S0 temperaturunabhängig sind, zutreffen. Mittels Monte Carlo Simulationen konnte gezeigt werden, dass selbst kleine Änderungen in den experimentellen Daten die erhaltenen Werte von H0 und S0 deutlich beeinflussen können. Dies liegt daran, dass die beiden Parameter im mathematischen Modell nicht völlig unabhängig voneinander sind. Selbst geringfügige thermochrome Veränderungen können daher die Ergebnisse für H0 und S0 beeinflussen. Die G0-Werte, die sich aus H0 und S0 berechnen lassen, sind allerding dennoch recht zuverlässig. Mittels lösungsmittelabhängiger Studien ist es oft am einfachsten, den vollständigen Prozess vom Monomer (agg = 0) bis zum Aggregat (agg = 1) abzubilden. Für stark solvatochrome Farbstoffe wie die hier untersuchten dipolaren Merocyanine werden die Ergebnisse allerdings deutlich verfälscht. Auch die Annahme einer linearen Abhängigkeit der Bindungsenergie G0 und der Lösungsmittelzusammensetzung f, die auf linearen Freie-Energie Beziehungen zwischen G0 und der Lösungsmittelpolarität beruhen, kann zu Abweichungen führen, vor allem, wenn spezifische Lösungsmitteleffekte involviert sind. Die Auswertung der experimentellen Daten erfolgt mittels nichtlinearer Regression. Hierfür können diverse Datenauswertungsprogramme genutzt werden, in die sich benutzerdefinierte Modelle inklusive bekannter Parameter implementieren lassen. Alternativ gibt es auch eine Auswahl von spezialisierten Programmen zur Auswertung von Aggregationsdaten im Internet. Diese sind zwar deutlich benutzerfreundlicher, aber auch „Black Boxes“, deren voreingestellte Modelle und Parameter in der Regel nicht vom Nutzer für ein spezielles System angepasst werden können. In Kapitel 3 wurden umfangreiche UV/Vis-Absorptionsstudien für die Dimerisierung von Merocyanin 1 in 1,4-Dioxan vorgestellt, welche zum ersten Mal einen direkten Vergleich zwischen den Ergebnissen von konzentrations-, temperatur- und lösungsmittelabhängigen Aggregationsstudien ermöglichten. Die Ergebnisse für die Bindungskonstante K und dem dazugehörigen G0-Wert aus der konzentrations- und temperaturabhängigen Analyse stimmen mit den Ergebnissen der isothermalen Titrationskalorimetrie (ITC) überein. Bei der temperaturabhängigen Auswertung mussten allerdings mehrere Datensätze von Proben mit unterschiedlichen Konzentrationen zusammen ausgewertet werden, um einen aussagekräftigen Bereich des Aggregationsprozesses abzudecken. Außerdem wurde eine deutliche Abhängigkeit der Ergebnisse für H0 und S0 von der Wellenlänge festgestellt, die für die Auswertung gewählt wurde. Dies liegt an der kleinen thermochromen Verschiebung der Monomer- und Dimer-Absorptionsbande. Die Ergebnisse der lösungsmittelabhängigen Studien zeigten, wie für den stark solvatochromen Chromophor erwartet, die größte Abweichung. Allerdings beträgt die Abweichung für G0 selbst hier nur 2.5 kJ mol1 (9%), bei Auswertung bei 491 und 549 nm, im Vergleich zur konzentrationsabhängigen Auswertung (G0 = 29.1 kJ mol1). Trotz der ausgeprägten Solvatochromie sind die lösungsmittelabhängigen Studien also geeignet, um die Bindungsstärke eines Systems abzuschätzen. Mehrmalige Wiederholung der Experimente erlaubte eine Abschätzung der Reproduzierbarkeit der Ergebnisse und möglicher Fehlerquellen. Die Ergebnisse schwankten hierbei in allen Fällen nur geringfügig (G0 < 0.4 kJ mol1) und in der gleichen Größenordnung wie der Fehler der nichtlinearen Regression. Die Erkenntnisse aus diesen Studien waren eine wichtige Grundlage für die Untersuchung eines komplexeren supramolekularen Systems in Kapitel 4. Eine einzelne Methode ist oft nicht ausreichend, um einen mehrstufigen Aggregationsprozess vollständig aufzuklären, und auch zur Aufklärung der anti-kooperativen Aggregation des chiralen Merocyanins 2, wurde eine Kombination verschiedener Techniken angewandt. Lösungsmittelabhängige UV/Vis-Absorptionsstudien in CH2Cl2/MCH Mischungen zeigten die stufenweise Zusammenlagerung der Merocyanin-Monomere (max(M) = 549 nm, CH2Cl2) zuerst durch Dipol-Dipol Wechselwirkungen zu Dimeren (max(D) = 498 nm, CH2Cl2/MCH 15:85) und dann zu größeren -Stapeln (max(H) = 477 nm, MCH) mit ausgeprägter H-Kopplung. Die thermodynamische Auswertung dieser Daten leidet allerdings unter der ausgeprägten Solvatochromie, vor allem der Monomer-Spezies (max(M, CH2Cl2) = 549 nm, max(M, MCH) = 596 nm). Daher wurden stattdessen konzentrationsabhängige Studien bei verschiedenen Temperaturen durchgeführt, um den Aggregationsmechanismus aufzuklären und verlässliche thermodynamische Parameter zu bestimmen. Die Studien bei höheren Temperaturen waren notwendig, um mit den experimentellen Daten einen größeren agg--Bereich abdecken zu können. Aufgrund des ausgeprägten Unterschieds in der thermodynamischen Triebkraft für die Dimerisierung und die Bildung höherer Aggregate (KD/K5 = 6500) gibt es in MCH einen Konzentrationsbereich, in dem fast ausschließlich die dimere Spezies vorhanden ist, bevor eine weitere Zusammenlagerung durch Dispersionswechselwirkungen erfolgt. Dies ermöglichte eine unabhängige Auswertung der Daten für die beiden Aggregationsschritte. Der Zusammenschluss von Dimeren zum höheren Aggregat ließ sich nicht durch das isodesmische Modell beschreiben, sondern durch ein Pentamer-Modell. Diese Größe von etwa zehn -gestapelten PYOP-Chromophoren wurde außerdem durch AFM-, VPO- und DOSY-NMR-Messungen bestätigt. Basierend auf 1D- und 2D-NMR-Daten und dem CD-Signal des höheren Aggregats mit positivem Cotton-Effekt in Kombination mit TD-DFT Rechnungen, wurde ein P-helikaler -Stapel als Struktur angenommen. Die geringe Größe lässt sich durch den anti-kooperativen Aggregationsmechanismus und den sterischen Anspruch der lösungsvermittelnden Trialkoxyphenyl- und der chiralen Tetralin-Substituenten erklären. Die durch diese Substituenten ausgebildete aliphatische Hülle um den polaren Chromophorstapel kann außerdem die ungewöhnlich hohe Löslichkeit der Verbindung 2 in MCH erklären (> 15 mg mL1). Die detaillierte Untersuchung des Selbstorganisationsprozesses ermöglichte die Identifizierung geeigneter Bedingungen für die Untersuchung der Fluoreszenzeigenschaften der einzelnen Aggregatspezies. Für das nahezu nicht emittierende Monomer (Fl(M) = 0.23%) wurde durch zunehmende Rigidisierung im Dimer (Fl(D) = 2.3%) und im höherem Aggregat (Fl(H) = 4.5%) eine durch Aggregation induzierte Emissionssteigerung beobachtet. Die helikale Chiralität des PYOP-Decamer-Stapels führte außerdem zu einem starken CPL Signal mit einem hohen glum-Wert von 0.011. Das wichtige Fazit dieser Arbeit ist, dass sowohl temperatur- als auch lösungsmittelabhängige Studien valide Alternativen zu den klassischen konzentrationsabhängigen Untersuchungen sind, mit denen thermodynamische Parameter von Selbstorganisations-Gleichgewichten bestimmt werden können. Wobei für ein bestimmtes supramolekulares System eine der Methoden aus verschiedenen Gründen vorteilhafter sein kann als die anderen. Üblicherweise gegebene experimentelle Beschränkungen erfordern oft den kombinierten Einsatz von Techniken, um einen Selbstorganisationsprozess und die Aggregatstrukturen vollständig aufzuklären. Die anti-kooperative Merocyanin-Selbstorganisation, die hier zum ersten Mal für das PYOP-Merocyanin 2 beschrieben wurde, ist keine Ausnahme. Neben dem Interesse an den Merocyanin-Aggregaten aus struktureller und funktioneller Sicht können die aus den vorgestellten Studien gewonnenen Erkenntnisse auch auf andere Selbstassemblierungs-systeme übertragen werden und als Leitfaden für die Suche nach der am besten geeigneten Analysemethode dienen. KW - Merocyanine KW - Supramolekulare Chemie KW - Self-Assembly Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352111 ER - TY - THES A1 - Roger, Chantal T1 - Photophysics and Spin Chemistry of Triptycene Bridge Donor-Acceptor-Triads T1 - Photophysik und Spinchemie von Triptycen Brücken Donor-Akzeptor Triaden N2 - The goal of this thesis was to investigate the influence of rotational restriction between individual parts and of the varying electron density in the bridging unit of D B A systems on the exchange interaction 2J, and thus the electronic coupling between a donor state and an acceptor state. A better understanding of how to influence the underlaying spin dynamics in such donor acceptor systems can open up the door to new technologies, such as modern molecular electronics or optoelectronic devices. Therefore, three series of molecules consisting of a TAA electron donor, a TTC or ATC bridging unit and a PDI electron acceptor were studied. To investigate the influence of rotational restriction on 2J and the electronic coupling, a series of four rotationally hindered triads (chapter 6) was synthesised. The dihedral angle between the TAA and the TTC as well as between the TTC and the PDI was restricted by ortho methyl groups at the phenylene linkers of the connecting ends to the TTC bridge, producing a twist around the linking single bond which minimises the π overlap. The triads exhibit varying numbers of ortho methyl groups and therefore different degrees of rotational restriction. In order to shine light on the influence of varying electron density on 2J and the electronic coupling, a series of four substituted triptycene triads (chapter 7) was synthesised. The electron density in the TTC bridging unit was varied by electron donating and electron withdrawing groups in 12,13 position of the TTC bridging unit and thus varying its HOMO/LUMO energy. The last series of two anthracene bridge triads (chapter 8) connected both approaches by restricting the rotation with ortho methyl groups and simultaneously by varying the bridge energies. In order to obtain the electronic properties, steady state absorption and emission spectra of all triads were investigated (chapter 4). Here, all triads show spectral features associated with the separate absorption bands of TAA and the PDI moiety. The reduced QYs, compared to the unsubstituted PDI acceptor, indicate a non radiative quenching mechanism in all triads. The CV data (chapter 5) were used to calculate the energies of possible CSSs and those results were used to assign the CR dynamics into the different Marcus regions. fs TA measurements reveal that all triads form a CSS upon excitation of the PDI moiety. The lifetimes of the involved states and the rate constants were determined by global exponential fits and global target analysis. The CR dynamics upon depopulation of the CSSs were investigated using external magnetic field dependent ns TA spectroscopy. The ns TA maps show that all triads recombine via CRT pathway populating the local 3PDI state in toluene and provided the respective lifetimes. The approximate QYs of triplet formation were determined using actinometry. The magnetic field dependent ns TA data reveal the exchange interaction 2J between singlet and triplet CSS for each triad. Those magnetic field dependent ns TA data in toluene were furthermore treated using a quantum mechanical simulation (done by U.E. Steiner) to extract the rate constants kT and kS for CRT and CRS, respectively. However, the error margins of kS were rather wide. Finally, the electronic couplings between the donor and the acceptor states were obtained by combining the aforementioned experimental results of the rate constants and applying the Bixon Jortner theoretical description of diabatic ET and Andersons perturbative theory of the exchange coupling. Therefore, the experimentally determined values of 2J and the calculated values of kCS and kT were used. The rate constant kS was calculated based on the electronic coupling V1CSS 1S0. The rotationally hindered triads (chapter 6) show a strong influence of the degree of rotational restriction on the lifetimes and rate constants of the CS processes. The rate constants of CS are increasing with increasing rotational freedom. The magnetic field dependent decay data show that the exchange interactions increase with increasing rotational freedom. Based on the CR dynamics, the calculated electronic couplings of the ET processes reflect the same trend along the series. Here, only singlet couplings turned out to be strongly influenced while the triplet couplings are not. Therefore, this series shows that the ET dynamics of donor acceptor systems can strongly be influenced by restricting the rotational freedom. In the substituted triptycene triads (chapter 7), decreasing electron density in the bridging unit causes a decrease of the CS rate constants. The magnetic field dependent decay data show that with decreasing electron density in the bridge the exchange interaction decreases. The CR dynamics-based rate constants and the electronic couplings follow the same trend as the exchange interaction. This series shows that varying the HOMO/LUMO levels of the connecting bridge between donor and acceptor strongly influences the ET processes. In the anthracene bridge triads (chapter 8), the CS process is slow in both triads. The CR was fast in the anthracene triad and is slowed down in the methoxy substituted anthracene bridge triad. The increase of the exchange interaction with increasing electron density in the bridge was more pronounced than in the substituted triptycene triads. Thus, the variation of electron density in the bridge strongly influences the ET processes even though the rotation is restricted. In this thesis, it was shown that the influence of the rotational hindrance as well as the electron density in a connecting bridge have strong influence on all ET processes and the electronic coupling in donor acceptor systems. These approaches can therefore be used to modify magnetic properties of new materials. N2 - Das Ziel dieser Arbeit war es, den Einfluss von Rotationshinderung zwischen einzelnen Bausteinen und Variation der Elektronendichte in der Brückeneinheit eines Donor Brücke Akzeptor Systems auf die Austauschwechselwirkung 2J und somit die elektronische Kopplung zwischen dem Donor- und dem Akzeptor-Zustand zu untersuchen. Ein besseres Verständnis der zugrundeliegenden Spindynamiken in solchen Donor Akzeptor Systemen - und wie diese beeinflusst werden können - kann einen Zugang zu neuen Technologien wie molekularer Elektronik oder optoelektronischen Geräten ermöglichen. Im Zuge dessen wurden drei Molekülreihen, bestehend aus einem TAA Elektronendonor, einer TTC oder ATC Brücke und einem PDI Elektronenakzeptor, untersucht. Der Einfluss von eingeschränkter Rotation zwischen den einzelnen Bausteinen auf die Austauschwechselwirkung und die elektronische Kopplung wurde anhand einer Reihe von rotationsgehinderten Triaden (Kapitel 6) untersucht. Der Winkel zwischen der TAA und der TTC Einheit sowie zwischen der TTC und der PDI Einheit wurde durch ortho ständige Methylgruppen eingeschränkt. Dies führt zu einer Verdrillung um die verbrückende Einfachbindung. Um unterschiedliche Grade der Rotationshinderung zu erzielen, wurden die Triaden mit einer unterschiedlichen Anzahl von ortho Methylgruppen substituiert. Des Weiteren wurde eine Reihe, bestehend aus vier Triptycen substituierten Triaden (Kapitel 7), synthetisiert, um den Einfluss variierender Elektronendichte auf 2J und die elektronische Kopplung zu untersuchen. Die Elektronendichte in der TTC-Brückeneinheit wurde durch elektronenschiebende und elektronenziehende Gruppen in 12,13-Position an der TTC-Brückeneinheit variiert, was eine Änderung der HOMO/LUMO-Energien der Brücke zur Folge hat. Die letzte Reihe besteht aus zwei Anthracen verbrückten Triaden (Kapitel 8) und stellt die Kombination beider Ansätze dar. Um dies zu erzielen wurde die Rotation durch ortho-Methylgruppen vollständig unterdrückt und gleichzeitig die Brückenenergie verändert. Um die elektronischen Eigenschaften der Triaden zu untersuchen, wurden zunächst die stationären Absorptions und Emissionseigenschaften betrachtet (Kapitel 4). Die Absorptionsbanden können in allen Triaden der TAA sowie der PDI Einheit zugeordnet werden. Die Fluoreszenz Quantenausbeuten weisen, verglichen mit dem reinen PDI Akzeptor, deutlich geringere Werte auf. Dies deutet auf einen alternativen, nicht strahlenden Desaktivierungspfad hin. Mit Hilfe der CV Daten (Kapitel 5) wurde die Energie des ladungsgetrennten Zustandes für jede Triade berechnet und die Ladungsrekombinationspfade in die jeweiligen Marcus Regionen eingeordnet. fs transiente Absorptionsmessungen zeigen, dass alle Triaden einen ladungsgetrennten Zustand ausbilden. Die Lebenszeiten der beteiligten Zustände wurden mit Hilfe eines globalen exponentiellen Fits und die Ratenkonstanten mit Hilfe einer globalen Targetanalyse bestimmt. Die Ladungsrekombinationsdynamiken wurden mit Hilfe magnetfeldabhängiger ns transienter Absorptionsmessungen betrachtet. Die ns transienten Karten zeigen, dass alle Triaden in Toluol über den Triplett Rekombinationspfad in den lokalen Triplettzustand des PDI rekombinieren. Des Weiteren lieferten diese Messungen die Lebenszeiten des ladungsgetrennten Zustandes. Die Quantenausbeuten der Bildung des Triplettzustandes wurden mittels Actinometrie abgeschätzt. Mit Hilfe der magnetfeldabhängigen ns transienten Messungen konnte die Austauschwechselwirkung zwischen dem singulett und dem triplett ladungsgetrennten Zustand für jede Triade bestimmt werden. Um die Ratenkonstanten kT and kS der Triplett und Singulett Rekombination zu erhalten, wurden die Daten der magnetfeldabhängigen ns transienten Messungen mittels einer quantendynamischen Simulation untersucht (durchgeführt von U. E. Steiner, Universität Konstanz). Hierbei waren die Fehlergrenzen für kS jedoch sehr groß. Die elektronischen Kopplungen wurden mit Hilfe der Bixon Jortner Theorie des diabatischen elektronen Transfers und Andersons störungstheoritischem Ansatz zur Beschreibung der Austauschwechselwirkung aus den experimentellen Daten sowie den Ratenkonstanten berechnet. Hierfür wurden die die experimentell bestimmten 2J Werte sowie die berechneten Werte von kCS und kT verwendet. Um ein umfassendes Bild zu erhalten wurden die Ratenkonstanten kS aus den elektronischen Kopplungen V1CSS 1S0 berechnet. Die rotationsgehinderten Triaden (Kapitel 6) weisen eine starke Abhängigkeit der Ratenkonstanten des Ladungstrennungsprozesses vom Grad der Rotationseinschränkung auf. Hierbei steigen die Werte der Ratenkonstanten mit zunehmender Rotationsfreiheit. Der selbe Trend kann in der Austauschwechselwirkung bei Betrachtung der magnetfeldabhängigen Abklingkurven beobachtet werden. Des Weiteren zeigen die berechneten elektronischen Kopplungen ebenfalls eine Zunahme bei gesteigerter Rotationsfreiheit. Hierbei war zu beobachten, dass nur die Singulett Kopplungen von der Rotation beeinflusst wurden, Triplett Kopplungen jedoch nahezu unverändert blieben. Mit Hilfe dieser Reihe wurde gezeigt, dass Elektrontransferdynamiken durch Rotationseinschränkung beeinflusst werden können. In der Reihe der substituierten Triptycen Triaden (Kapitel 7) führt eine Abnahme der Elektronendichte in der Brücke zu einer Verringerung der Ratenkonstanten des Ladungstrennungsprozesses. Die Daten der magnetfeldabhängigen Abklingkurven zeigen, dass die Austauschwechselwirkung ebenfalls mit verringerter Elektronendichte in der Brücke abnimmt. Die berechneten elektronischen Kopplungen folgen dem Trend der Austauschwechselwirkung. Anhand dieser Reihe konnte gezeigt werden, dass Elektronentransferprozesse durch Veränderung der Brückenenergien beeinflusst werden können. In den Anthracen Brücken Triaden (Kapitel 8) ist die Ladungstrennung für beide Triaden langsam. Die Ladungsrekombination wird durch den elektronenschiebenden Effekt der Methoxygruppen, verlangsamt. Die Austauschwechselwirkung nimmt mit steigender Elektronendichte in der Brücke zu, wobei dieser Effekt stärker ausgeprägt ist als in den Triptycen substituierten Triaden. Die Variation der Elektronendichte hat somit, trotz vollständig gehinderter Rotation, einen starken Einfluss auf die Elektronentransferdynamiken. In dieser Arbeit konnte gezeigt werden, dass gehinderte Rotation und variierende Elektronendichte in einer Brückeneinheit einen starken Einfluss auf die Elektronentransferdynamiken und die elektronischen Kopplungen in Donor Akzeptor-Systemen haben. Diese Ansätze können somit dazu verwendet werden die magnetischen Eigenschaften von neuen Materialien zu verändern. KW - spin chemistry KW - Spinchemie KW - donor-acceptor triads KW - Donor-Akzeptor Triaden KW - Rotation KW - photophysics KW - electron transfer KW - rotation KW - electron density Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-363031 ER - TY - THES A1 - Swain, Asim T1 - Helically Twisted Graphene Nanoribbons: Bottom-up Stereospecific Synthesis and Characterization T1 - Helikal verdrehte Graphen-Nanoribbons: Bottom-up stereospezifische Synthese und Charakterisierung N2 - Over the past decade, substantial progress has been made in synthesizing atomically precise carbon nanostructures, with a focus on graphene nanoribbons (NRs) through advanced synthetic techniques. Despite these advancements, precise control over the stereochemistry of twisted NRs remains challenging. This thesis introduces a strategic approach to achieve absolute control over the single-handed helical conformation in a cove-edged NR, utilizing enantiopure [n]helicenes as a molecular wrench to intricately dictate the overall conformation of the NR. Enantiopure [7]helicenes were stitched to the terminal K-regions of a conjugated pyrene NR using a stereospecific and site-selective palladium(II)-catalyzed annulative π-extension (APEX) reaction, resulting in a helically twisted NR with an end-to-end twist of 171°, the second-largest twist reported so far in the literature for twistacenes. The helical end-to-end twist increases with each addition of benzene ring to the central acene core, suggesting that the extra strain induced by the terminal [7]helicenes maintains such a high level of twist. The quantum chemical calculations were conducted to investigate the impact of twisting on the conformational population. At room temperature, the central backbone of the nanoribbon adopts the twisted helicity opposite to that of the attached [7]helicene, constituting around 99% of the molecular population. For instance, (P)-[7]helicenes produce a left-handed helical nanoribbon, while (M)-[7]helicenes produce a right-handed helical nanoribbon. In the presence of helicenes of opposite chirality, the nanoribbon adopts a waggling conformation. The helically twisted nanoribbons are conformationally robust, as variable temperature chiroptical measurements showed no change in CD and CPL spectra. The proposed strategy, involving the late-stage addition of [n]helicene units through the APEX reaction, appears promising for streamlining the synthesis of diverse cove edge NR variants with desired conformations. In addition to single-handed helically twisted nanoribbons, the symmetry-based functional properties of C2 and C1 symmetric pyrene-fused single and double [n]helicene compounds were studied. Owing to its higher structural rigidity, the C1 symmetric heptagonal ring-containing molecules exhibited exceptional configurational stability along with remarkable chiroptical properties compared to their C2 symmetric as well as pristine helicene congeners. N2 - In den letzten zehn Jahren wurden erhebliche Fortschritte bei der Synthese von atomar präzisen Kohlenstoffnanostrukturen erzielt, bei denen der Schwerpunkt durch verbesserte synthetische Methoden auf Graphen-Nanoribbons (NRs) lag. Trotz dieser Fortschritte bleibt die Kontrolle über die Stereochemie verdrehter NRs eine Herausforderung. Diese Dissertation stellt einen strategischen Ansatz vor, um absolute Kontrolle über die einhändig-helikale Konformation in einem cove-edged NR zu erreichen. Dabei werden enantiomerenreine [n]Helicene als molekulare Werkzeuge verwendet, um die Gesamtkonformation des NR präzise zu steuern. Enantiomerenreine [7]Helicene wurden mittels einer stereospezifischen und ortsselektiven Palladium(II)-katalysierten annulativen π-Erweiterungsreaktion (APEX) an die terminalen K-Regionen eines konjugierten Pyren-NR gebunden. Dies führte zu einem helikal-verdrehten NR mit einer End-zu-End-Windung von 171°, der zweithöchsten bisher in der Literatur für Twistacene berichteten Windung. Die helikale End-zu-End-Windung nimmt mit jeder Erweiterung um einen Benzolring zum zentralen Acenekern zu, was darauf hindeutet, dass die durch die terminalen [7]Helicene induzierte zusätzliche Spannung ein solch hohes Maß an Windung aufrechterhält. Quantenchemischen Berechnungen wurden durchgeführt, um den Einfluss der Verdrehung auf die konformationelle Population zu untersuchen. Bei Raumtemperatur nimmt das zentrale Rückgrat des Nanoribbons die entgegengesetzte Helizität zu der der angefügten [7]Helicene an, was etwa 99 % der molekularen Population ausmacht. Beispielsweise erzeugen (P)-[7]Helicene ein linkshändig-helikales Nanoribbon, während (M)-[7]Helicene ein rechtshändig-helikales Nanoribbon erzeugen. In Gegenwart von Helicenen entgegengesetzter Chiralität nimmt das Nanoribbon eine waggling-Konformation an. Die helikal-verdrehten Nanoribbons sbesitzen eine robuste Konformation, da chiroptische Messungen bei variablen Temperaturen keine Veränderung in den CD- und CPL-Spektren zeigten. Der vorgeschlagene Ansatz, der die Erweiterung durch [n]Helicen-Einheiten mithilfe der APEX-Reaktion umfasst, scheint vielversprechend für die Vereinfachung der Synthese verschiedener cove-edged NR-Varianten mit gewünschten Konformationen. Neben einhändig helikal-verdrehten Nanoribbons wurden die symmetriebasierten funktionellen Eigenschaften von C2- und C1-symmetrischen Pyren-gebundenen Einzel- und Doppel-[n]Helicenverbindungen untersucht. Aufgrund ihrer höheren strukturellen Rigidität zeigten die C1-symmetrischen heptagonalen Ringverbindungen außergewöhnliche hohe Konfigurationsstabilität sowie bemerkenswerte chiroptische Eigenschaften im Vergleich zu ihren C2-symmetrischen sowie reinen Helicen-Kongeneren. KW - Helicene KW - Pyren KW - Nanoribbon KW - Chirality KW - Acenes KW - Pyrene Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-360164 ER - TY - JOUR A1 - Brünnert, Daniela A1 - Seupel, Raina A1 - Goyal, Pankaj A1 - Bach, Matthias A1 - Schraud, Heike A1 - Kirner, Stefanie A1 - Köster, Eva A1 - Feineis, Doris A1 - Bargou, Ralf C. A1 - Schlosser, Andreas A1 - Bringmann, Gerhard A1 - Chatterjee, Manik T1 - Ancistrocladinium A induces apoptosis in proteasome inhibitor-resistant multiple myeloma cells: a promising therapeutic agent candidate JF - Pharmaceuticals N2 - The N,C-coupled naphthylisoquinoline alkaloid ancistrocladinium A belongs to a novel class of natural products with potent antiprotozoal activity. Its effects on tumor cells, however, have not yet been explored. We demonstrate the antitumor activity of ancistrocladinium A in multiple myeloma (MM), a yet incurable blood cancer that represents a model disease for adaptation to proteotoxic stress. Viability assays showed a potent apoptosis-inducing effect of ancistrocladinium A in MM cell lines, including those with proteasome inhibitor (PI) resistance, and in primary MM cells, but not in non-malignant blood cells. Concomitant treatment with the PI carfilzomib or the histone deacetylase inhibitor panobinostat strongly enhanced the ancistrocladinium A-induced apoptosis. Mass spectrometry with biotinylated ancistrocladinium A revealed significant enrichment of RNA-splicing-associated proteins. Affected RNA-splicing-associated pathways included genes involved in proteotoxic stress response, such as PSMB5-associated genes and the heat shock proteins HSP90 and HSP70. Furthermore, we found strong induction of ATF4 and the ATM/H2AX pathway, both of which are critically involved in the integrated cellular response following proteotoxic and oxidative stress. Taken together, our data indicate that ancistrocladinium A targets cellular stress regulation in MM and improves the therapeutic response to PIs or overcomes PI resistance, and thus may represent a promising potential therapeutic agent. KW - multiple myeloma KW - ancistrocladinium A KW - naphthylisoquinoline alkaloids KW - proteasome inhibitor resistance KW - RNA splicing KW - cellular stress response KW - proteasome subunit beta type-5 (PSMB5) KW - activating transcription factor 4 (ATF4) KW - ataxia teleagiectasia mutated (ATM) KW - H2A histone family member X (H2AX) Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-362887 SN - 1424-8247 VL - 16 IS - 8 ER - TY - JOUR A1 - Schneider, Tilman A1 - Seebauer, Florian A1 - Beuerle, Florian A1 - Würthner, Frank T1 - A monodisperse, end‐capped Ru(bda) oligomer with outstanding performance in heterogeneous electrochemical water oxidation JF - Advanced Materials Technologies N2 - AbstractWater oxidation catalysis is a key step for sustainable fuel production by water splitting into hydrogen and oxygen. The synthesis of a novel coordination oligomer based on four Ru(bda) (bda = 2,2′‐bipyridine‐6,6′‐dicarboxylate) centers, three 4,4′‐bipyridine (4,4′‐bpy) linkers, and two 4‐picoline (4‐pic) end caps is reported. The monodispersity of this tetranuclear compound is characterized by NMR techniques. Heterogeneous electrochemical water oxidation after immobilization on multi‐walled carbon nanotubes (MWCNTs) shows catalytic performance unprecedented for this compound class, with a turnover frequency (TOF) of 133 s\(^{−1}\) and a turnover number (TON) of 4.89 × 10\(^6\), at a current density of 43.8 mA cm\(^{−2}\) and a potential of 1.45 V versus normal hydrogen electrode (NHE). KW - water oxidation catalysis KW - coordination oligomers KW - electrocatalysis KW - heterogeneous catalysis KW - renew-able fuels KW - ruthenium bda complexes KW - water splitting Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-363133 SN - 2365-709X VL - 9 IS - 11 ER - TY - JOUR A1 - Dostál, Jakub A1 - Fennel, Franziska A1 - Koch, Federico A1 - Herbst, Stefanie A1 - Würthner, Frank A1 - Brixner, Tobias T1 - Direct observation of exciton–exciton interactions JF - Nature Communications N2 - Natural light harvesting as well as optoelectronic and photovoltaic devices depend on efficient transport of energy following photoexcitation. Using common spectroscopic methods, however, it is challenging to discriminate one-exciton dynamics from multi-exciton interactions that arise when more than one excitation is present in the system. Here we introduce a coherent two-dimensional spectroscopic method that provides a signal only in case that the presence of one exciton influences the behavior of another one. Exemplarily, we monitor exciton diffusion by annihilation in a perylene bisimide-based J-aggregate. We determine quantitatively the exciton diffusion constant from exciton–exciton-interaction 2D spectra and reconstruct the annihilation-free dynamics for large pump powers. The latter enables for ultrafast spectroscopy at much higher intensities than conventionally possible and thus improves signal-to-noise ratios for multichromophore systems; the former recovers spatio–temporal dynamics for a broad range of phenomena in which exciton interactions are present. KW - energy transfer KW - self-assembly KW - optical spectroscopy Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226271 VL - 9 ER - TY - JOUR A1 - He, Tao A1 - Wu, Yanfei A1 - D'Avino, Gabriele A1 - Schmidt, Elliot A1 - Stolte, Matthias A1 - Cornil, Jérôme A1 - Beljonne, David A1 - Ruden, P. Paul A1 - Würthner, Frank A1 - Frisbie, C. Daniel T1 - Crystal step edges can trap electrons on the surfaces of n-type organic semiconductors JF - Nature Communications N2 - Understanding relationships between microstructure and electrical transport is an important goal for the materials science of organic semiconductors. Combining high-resolution surface potential mapping by scanning Kelvin probe microscopy (SKPM) with systematic field effect transport measurements, we show that step edges can trap electrons on the surfaces of single crystal organic semiconductors. n-type organic semiconductor crystals exhibiting positive step edge surface potentials display threshold voltages that increase and carrier mobilities that decrease with increasing step density, characteristic of trapping, whereas crystals that do not have positive step edge surface potentials do not have strongly step density dependent transport. A device model and microelectrostatics calculations suggest that trapping can be intrinsic to step edges for crystals of molecules with polar substituents. The results provide a unique example of a specific microstructure–charge trapping relationship and highlight the utility of surface potential imaging in combination with transport measurements as a productive strategy for uncovering microscopic structure–property relationships in organic semiconductors. KW - electronic and spintronic devices KW - electronic devices KW - scanning probe microscopy Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-227957 VL - 9 ER - TY - THES A1 - Weh, Manuel T1 - Chiral Perylene Bisimide Cyclophanes T1 - Chirale Perylenbisimidcyclophane N2 - This work illustrates how the targeted tailoring of supramolecular cavities can not only accomplish high binding due to optimized stereoelectronic shape matches between host and guest but also how molecular engineering of the binding site by a refined substitution periphery of the cavity makes enantiospecific guest recognition and host mediated chirality transfer feasible. Moreover, an enzyme mimic, following the Pauling-Jencks model of enzyme catalysis was realized by the smart design of a PBI host composed of moderately twisted chromophores, which drives the substrate inversion according to the concepts of transition state stabilization and ground state destabilization. The results of this thesis contribute to a better understanding of structure-specific interactions in host-guest complexes as well as the corresponding thermodynamic and kinetic properties and represent an appealing blueprint for the design of new artificial complex structures of high stereoelectronic shape complementarity in order to achieve the goal of sophisticated supramolecular receptors and enzyme mimicry. N2 - Diese Arbeit zeigt auf, wie durch die gezielte Konstruktion supramolekularer Kavitäten nicht nur hohe Bindungsaffinitäten aufgrund optimierter stereoelektronischer Formübereinstimmungen zwischen Wirt und Gast erreicht werden können, sondern auch, wie das molekulare Design der Bindungsstelle durch die genaue Einstellung der Substitutionsperipherie der Kavität eine enantiospezifische Gasterkennung sowie einen Wirt-vermittelten Chiralitätstransfer ermöglicht. Darüber hinaus wurde ein Enzymimitat, welches dem Pauling-Jencks-Modell der Enzymkatalyse folgt, durch das intelligente Design eines PBI-Wirts, der aus moderat verdrillten Chromophoren besteht und die Substratinversion gemäß der Konzepte der Übergangszustandsstabilisierung und Grundzustandsdestabilisierung antreibt, realisiert. Die Ergebnisse dieser Arbeit tragen zu einem besseren Verständnis der strukturspezifischen Wechselwirkungen in Wirt-Gast-Komplexen sowie der entsprechenden thermodynamischen und kinetischen Eigenschaften bei und stellen eine attraktive Blaupause für das Design neuer künstlicher Komplexsysteme mit hoher stereoelektronischer Formkomplementarität dar, um das Ziel hochentwickelter supramolekularer Rezeptoren sowie Enzym-ähnlicher Katalyse zu realisieren. KW - host-guest KW - cyclophane KW - Host-Guest Chemistry Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-315296 ER - TY - JOUR A1 - Hoernes, Thomas Philipp A1 - Faserl, Klaus A1 - Juen, Michael Andreas A1 - Kremser, Johannes A1 - Gasser, Catherina A1 - Fuchs, Elisabeth A1 - Shi, Xinying A1 - Siewert, Aaron A1 - Lindner, Herbert A1 - Kreutz, Christoph A1 - Micura, Ronald A1 - Joseph, Simpson A1 - Höbartner, Claudia A1 - Westhof, Eric A1 - Hüttenhofer, Alexander A1 - Erlacher, Matthias David T1 - Translation of non-standard codon nucleotides reveals minimal requirements for codon-anticodon interactions JF - Nature Communications N2 - The precise interplay between the mRNA codon and the tRNA anticodon is crucial for ensuring efficient and accurate translation by the ribosome. The insertion of RNA nucleobase derivatives in the mRNA allowed us to modulate the stability of the codon-anticodon interaction in the decoding site of bacterial and eukaryotic ribosomes, allowing an in-depth analysis of codon recognition. We found the hydrogen bond between the N1 of purines and the N3 of pyrimidines to be sufficient for decoding of the first two codon nucleotides, whereas adequate stacking between the RNA bases is critical at the wobble position. Inosine, found in eukaryotic mRNAs, is an important example of destabilization of the codon-anticodon interaction. Whereas single inosines are efficiently translated, multiple inosines, e.g., in the serotonin receptor 5-HT2C mRNA, inhibit translation. Thus, our results indicate that despite the robustness of the decoding process, its tolerance toward the weakening of codon-anticodon interactions is limited. KW - chemical modification KW - nucleic acids KW - ribozymes KW - RNA Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-321067 VL - 9 ER - TY - JOUR A1 - Herbst, Stefanie A1 - Soberats, Bartolome A1 - Leowanawat, Pawaret A1 - Stolte, Matthias A1 - Lehmann, Matthias A1 - Würthner, Frank T1 - Self-assembly of multi-stranded perylene dye J-aggregates in columnar liquid-crystalline phases JF - Nature Communications N2 - Many discoid dyes self-assemble into columnar liquid-crystalline (LC) phases with packing arrangements that are undesired for photonic applications due to H-type exciton coupling. Here, we report a series of crystalline and LC perylene bisimides (PBIs) self-assembling into single or multi-stranded (two, three, and four strands) aggregates with predominant J-type exciton coupling. These differences in the supramolecular packing and optical properties are achieved by molecular design variations of tetra-bay phenoxy-dendronized PBIs with two N–H groups at the imide positions. The self-assembly is driven by hydrogen bonding, slipped π–π stacking, nanosegregation, and steric requirements of the peripheral building blocks. We could determine the impact of the packing motifs on the spectroscopic properties and demonstrate different J- and H-type coupling contributions between the chromophores. Our findings on structure–property relationships and strong J-couplings in bulk LC materials open a new avenue in the molecular engineering of PBI J-aggregates with prospective applications in photonics. KW - liquid crystals KW - self-assembly Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-319914 VL - 9 ER -