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 - JOUR A1 - Ouyang, Guanghui A1 - Rühe, Jessica A1 - Zhang, Yang A1 - Lin, Mei-Jin A1 - Liu, Minghua A1 - Würthner, Frank T1 - Intramolecular Energy and Solvent-Dependent Chirality Transfer within a BINOL-Perylene Hetero-Cyclophane JF - Angewandte Chemie International Edition N2 - Multichromophoric macrocycles and cyclophanes are important supramolecular architectures for the elucidation of interchromophoric interactions originating from precise spatial organization. Herein, by combining an axially chiral binaphthol bisimide (BBI) and a bay-substituted conformationally labile twisted perylene bisimide (PBI) within a cyclophane of well-defined geometry, we report a chiral PBI hetero-cyclophane (BBI-PBI) that shows intramolecular energy and solvent-regulated chirality transfer from the BBI to the PBI subunit. Excellent spectral overlap and spatial arrangement of BBI and PBI lead to efficient excitation energy transfer and subsequent PBI emission with high quantum yield (80–98 %) in various solvents. In contrast, chirality transfer is strongly dependent on the respective solvent as revealed by circular dichroism (CD) spectroscopy. The combination of energy and chirality transfer affords a bright red circularly polarized luminescence (CPL) from the PBI chromophore by excitation of BBI. KW - chirality transfer KW - solvent effects KW - perylene bisimide KW - energy transfer KW - cyclophanes Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318818 VL - 61 IS - 31 ER - TY - JOUR A1 - Hong, Yongseok A1 - Kim, Woojae A1 - Kim, Taeyeon A1 - Kaufmann, Christina A1 - Kim, Hyungjun A1 - Würthner, Frank A1 - Kim, Dongho T1 - Real-time Observation of Structural Dynamics Triggering Excimer Formation in a Perylene Bisimide Folda-dimer by Ultrafast Time-Domain Raman Spectroscopy JF - Angewandte Chemie International Edition N2 - In π-conjugated organic photovoltaic materials, an excimer state has been generally regarded as a trap state which hinders efficient excitation energy transport. But despite wide investigations of the excimer for overcoming the undesirable energy loss, the understanding of the relationship between the structure of the excimer in stacked organic compounds and its properties remains elusive. Here, we present the landscape of structural dynamics from the excimer formation to its relaxation in a co-facially stacked archetypical perylene bisimide folda-dimer using ultrafast time-domain Raman spectroscopy. We directly captured vibrational snapshots illustrating the ultrafast structural evolution triggering the excimer formation along the interchromophore coordinate on the complex excited-state potential surfaces and following evolution into a relaxed excimer state. Not only does this work showcase the ultrafast structural dynamics necessary for the excimer formation and control of excimer characteristics but also provides important criteria for designing the π-conjugated organic molecules. KW - excimer KW - vibrational coherence KW - time-resolved impulsive stimulated raman spectroscopy KW - structural dynamics KW - perylene bisimide Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-318788 VL - 61 IS - 13 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 - THES A1 - Bold, Kevin T1 - Macrocyclic Oligothiophene Bridged Perylene Bisimide Donor−Acceptor Dyads T1 - Makrozyklische Oligothiophen-überbrückte Perylenbisimid Donor-Akzeptor Dioden N2 - A series of donor-acceptor macrocyclic architectures comprising oligothiophene strands that connect the imide positions of a perylene bisimide have been synthesized via a platinum-mediated cross-coupling strategy. The target structures were characterized by steady-state UV/Vis absorption, fluorescence and transient absorption spectroscopy, as well as cyclic and differential pulse voltammetry. Crystal structure analysis of the macrocycles revealed insights into the bridge arrangements. The properties of the macrocyclic bridges were compared to linear oligothiophene reference compounds which itself exhibited an unusual electrochemical effect. N2 - In der vorliegenden Dissertation wurde eine Reihe von Donor-Akzeptor Makrozyklen bestehend aus Oligothiophensträngen, welche die Imid-Positionen eines Perylenbisimids kovalent verbinden, in einer Platin-vermittelten Kreuzkupplungsreaktion synthetisiert. Die Zielstrukturen wurden anschließend mittels UV/Vis-, Fluoreszenz-und transienter Absorptionsspektroskopie, sowie zyklischer- bzw. Differential-Puls-Voltammetry charakterisiert. Ferner gewährten Kristallstrukturen von drei der insgesamt fünf Makrozyklen strukturelle Einblicke in die Oligothiophen-Brückengeometrie. Die photophysikalischen und elektrochemischen Eigenschaften der makrozyklischen Brücken wurden mit solchen linearer Oligothiophen-Referenzsystemen verglichen, welche selber ein ungewöhnliches Phänomen in der Elektrochemie aufwiesen. KW - Perylenbisdicarboximide KW - Makrocyclische Verbindungen KW - Thiophen KW - Farbstoff KW - donor-acceptor dyads KW - macrocycles KW - electron transfer KW - perylene bisimide KW - oligothiophenes Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-271926 ER - TY - JOUR A1 - Wen, Xinbo A1 - Nowak-Król, Agnieszka A1 - Nagler, Oliver A1 - Kraus, Felix A1 - Zhu, Na A1 - Zheng, Nan A1 - Müller, Matthias A1 - Schmidt, David A1 - Xie, Zengqi A1 - Würthner, Frank T1 - Tetrahydroxy-perylene bisimide embedded in zinc oxide thin film as electron transporting layer for high performance non-fullerene organic solar cells JF - Angewandte Chemie International Edition N2 - By introduction of four hydroxy (HO) groups into the two perylene bisimide (PBI) bay areas, new HO‐PBI ligands were obtained which upon deprotonation can complex ZnII ions and photosensitize semiconductive zinc oxide thin films. Such coordination is beneficial for dispersing PBI photosensitizer molecules evenly into metal oxide films to fabricate organic–inorganic hybrid interlayers for organic solar cells. Supported by the photoconductive effect of the ZnO:HO‐PBI hybrid interlayers, improved electron collection and transportation is achieved in fullerene and non‐fullerene polymer solar cell devices, leading to remarkable power conversion efficiencies of up to 15.95 % for a non‐fullerene based organic solar cell. KW - hydroxylation KW - metal complexenes KW - perylene bisimide KW - photoconductive interlayer KW - solar cells Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204723 VL - 58 IS - 37 ER - TY - THES A1 - Rehm, Stefanie T1 - Spermine-functionalized Perylene Bisimide Dyes: Synthesis and Self-assembly in Water T1 - Spermin-funktionalisierte Perylenbisimid Farbstoffe: Synthese und Selbstassemblierung in Wasser N2 - The main objective of this thesis was the design and synthesis of perylene bisimide dyes with sufficient water-solubility for the construction of self-assembled architectures in aqueous solutions. Beside these tasks another goal of this project was the control over the self-assembly process in terms of aggregate size and helicity, respectively. Within this thesis an appropriate synthesis for spermine-functionalized perylene bisimide dyes was developed and conducted successfully. The characterization of these building blocks and their course of self-assembly were investigated by NMR, UV/Vis and fluorescence spectroscopy as well as by atomic force and transmission electron microscopy. For the better understanding of the experimental results theoretical calculations were performed. N2 - Ziel dieser Dissertation war das Design und die Synthese von Perylenbisimiden mit hinreichender Wasserlöslichkeit, die für den Aufbau von selbständig assemblierten Strukturen in wässrigen Lösungen verwendet werden sollen. Ein weiteres Ziel dieses Projektes war die Kontrolle über den Prozess der Selbstanordnung hinsichtlich der Aggregatgröße beziehungsweise deren Helizität. Im Rahmen dieser Doktorarbeit wurde eine entsprechende Synthese für Spermin-funktionalisierte Perylenbisimide entworfen und erfolgreich durchgeführt. Die Charakterisierung dieser Bausteine und der Prozess deren Selbstanordnung wurde mit Hilfe von NMR-, UV/Vis- und Fluoreszenz-Spektroskopie aber auch mit Rasterkraft- und Elektronentransmissionsmikroskopie durchgeführt. Für das bessere Verständnis der experimentellen Ergebnisse wurden theoretische Berechnungen durchgeführt. KW - Perylenderivate KW - Selbstorganisation KW - perylene bisimide KW - spermine KW - polyamine KW - bola-amphiphile KW - fluorescence KW - Perylenbisimid KW - Spermin KW - Polyamin KW - Bola-Amphiphil KW - Fluoreszenz KW - Aggregation Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123201 ER - TY - THES A1 - Shao, Changzhun T1 - Programming Self-assembly: Formation of Discrete Perylene Bisimide Aggregates T1 - Steuerung der Selbstassemblierung: Aufbau der diskreten Perylenbisimid-Aggregaten N2 - The objective of this thesis focuses on the development of strategies for precise control of perylene bisimide (PBI) self-assembly and the in-depth elucidation of structural and optical features of discrete PBI aggregates by means of NMR and UV/Vis spectroscopy. The strategy for discrete dimer formation of PBIs is based on delicate steric control that distinguishes the two facets of the central perylene surface. The strategy applied in this thesis for accessing discrete PBI quadruple and further oligomeric stacks relies on backbone-directed PBI self-assembly. For this purpose, two tweezer-like PBI dyads bearing the respective rigid backbones, diphenylacetylene (DPA) and diphenylbutydiyne (DPB), were synthesized. The distinct aggregation behavior of these structurally similar PBI dyads can be ascribed to the intramolecular distance between the two PBI chromophores imparted by the DPA and DPB spacers. N2 - Das Ziel dieser Arbeit ist die Entwicklung von Strategien für die präzise Steuerung der PBI-Selbstorganisation sowie die gründliche Aufklärung der strukturellen und optischen Eigenschaften von diskreten PBI-Aggregaten mittels NMR- und UV/Vis-Spektroskopie. Die Strategie der diskreten Dimerbildung von PBIs ist auf der empfindlichen sterischen Kontrolle begründet, die eine Differenzierung der beiden Facetten der zentralen Perylenoberfläche ermöglicht. Um diskrete vierfache und höhere oligomere PBI-Stapel zu erhalten, behilft sich die vorliegende Arbeit der PBI-Selbstorganisation, die durch ein Rückgrat vermittelt wird. Zu diesem Zweck wurden zwei pinzettenartige PBI-Dyaden synthetisiert, die die starren Rückgrate Diphenylacetylen (DPA) bzw. Diphenylbutydiyn (DPB) tragen (Abbildung 2). Das unterschiedliche Aggregationsverhalten dieser strukturell ähnlichen PBI-Dyaden kann den verschiedenen intramolekularen Abständen der beiden PBI-Chromophore zugeschrieben werden, die durch DPA bzw. DPB als Abstandshalter vorgegeben werden. KW - Farbstoff KW - perylene bisimide KW - self-assembly KW - dimer KW - Perylenderivate KW - Selbstorganisation Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69298 ER - TY - THES A1 - Kaiser, Theo E. T1 - J-Aggregates of Tetraphenoxy-Substituted Perylene Bisimide Dyes T1 - J-Aggregate aus tetraphenoxy-substituierten Perylenbisimid-Farbstoffen N2 - In dieser Doktorarbeit wurde gezeigt, dass die sehr begehrte J-Aggregation funktionaler Perylenbisimid-Chromophore durch geeignetes Design der monomeren Bausteine erreicht werden kann. Hierzu war einerseits die Selbstanordnung durch ein Zusammenwirken von Wasserstoffbrücken und Pi-Pi-Wechselwirkungen zu begünstigen, und andererseits eine Anordnung in kolumnaren Stapeln zu verhindern, was durch Kern-Verdrillung mittels sterisch anspruchsvollen Substituenten gelang. Desweiteren gaben Selbstanordnungsstudien neue Einblicke in den dynamischen Aggregationsprozess niedrigdimensionaler langgestreckter Aggregate mit stark exzitonisch gekoppelten Chromophoren. Die Beziehung zwischen bekannten Cyaninfarbstoffen, wie der von THIATS mit dem vorliegenden PBI 1a wurde durch Absorptions- und Fluoreszenzspektroskopie bei Tieftemperaturen von 5 K bis Raumtemperatur untersucht. Die vormals beispiellosen funktionalen Eigenschaften der PBI-Aggregate, welche aus der J-artigen exzitonischen Kopplung herrühren, sind vielversprechend für die Anwendung in optoelektronischen Bauteilen und für die Photovoltaik. N2 - In conclusion, the present thesis demonstrates that the highly desired J-type aggregation of functional perylene bisimide chromophores can be achieved by proper design of monomeric building blocks that direct self-assemble by mutual effects of hydrogen bonding and pi-pi interaction, and on the other hand, are prevented to assemble in columnar stacks owing to their twisted pi-conjugated core and sterically demanding substituents. Furthermore, the self-assembly studies gave new insights into the dynamic aggregation process of low-dimensional extended assemblies with strongly excitonically coupled chromophores. The relationship between commonly known cyanine dye aggregates like that of THIATS and that of the present PBI 1a was investigated by absorption and fluorescence spectroscopy at low temperatures down to 5 K. The formerly unprecedented functional properties of PBI aggregates that are expressed in J-type excitonic coupling hold promise for application in optoelectronic and photovoltaic devices. KW - Perylenbisdicarboximide KW - Synthetischer Farbstoff KW - Scheibe-Aggregat KW - Cyaninfarbstoff KW - supramolekular KW - J-Aggregat KW - Wasserstoffbrücken KW - Perylenbisimid KW - Aggregation KW - Farbstoff KW - supramolecular KW - J-aggregate KW - H-bonds KW - perylene bisimide Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-43544 ER - TY - THES A1 - Li, Xueqing T1 - Hydrogen Bond-directed Self-assembly of Perylene Bisimide Organogelators N2 - Perylene bisimide (PBI) dyes are a widely used class of industrial pigments, and currently have gained significant importance for organic-based electronic and optical devices. Structural modification at the PBI core results in changes of the optical and electronic properties, which enable tailored functions. Moreover, the aggregation behavior of PBIs is alterable and controllable to achieve new materials, among which organogels are of particular interest because of their potential for applications as supramolecular soft materials. In this work, new PBI-based organic gelators were designed, synthesized, and characterized, and the aggregation behaviors under different conditions were intensively studied by various spectroscopic and microscopic methods. In chapter 2, a brief overview is given on the structural and functional features of organogel systems. The definition, formation and reversibility of organogels are introduced. Some examples on dye based organogel are selected, among which PBI-based organogelators reported so far are especially emphasized. Some basic knowledges of supramolecular chirality are also overviewed such as characterization, amplification, and symmetry breaking of the chiral aggregates. According to our former experiences, PBIs tend to form aggregates because the planer aromatic cores interact with one another by pi-pi interaction. In chapter 3, a new PBI molecule is introduced which possesses amide groups between the conjugated core and periphery alkyl chains. It is found that well oriented aggregates are formed by hydrogen bonding and the pi-pi interaction of the cores. These interactions enable the aggregates to grow in one-dimension forming very long fibers, and these fibers further intercross to 3D network structures, e.g., organogels. In comparison to the very few PBI-based gelators reported before, one advantage of this gelator is that, it is more versatile and can gelate a wide range of organic solvents. Moreover, the well-organized fibers that are composed of extended π-stacks provide efficient pathways for n-type charge carriers. Interestingly, AFM studies reveal that the PBI molecules form well-defined helical fibers in toluene. Both left-handed (M) and right-handed (P) helicities can be observed without any preference for one handedness because the building block is intrinsically achiral. In chapter 4, we tried to influence the M/P enantiomeric ratio by applying external forces. For example, we utilized chiral solvents to generate chiral aggregates with a preferential handedness. AFM analysis of the helices showed that a enantiomeric ratio of about 60: 40 can be achieved by aggregation in chiral solvents R- or S-limonene. Moreover, the long aggregated fibres can align at macroscopic level in vortex flows upon rotary stirring In chapter 5, bulky tetra-phenoxy groups are introduced in the bay area of the PBI gelator. The conjugated core of the new molecule is now distorted because of the steric hindrance. UV/Vis studies reveal a J-type aggregation in apolar solvents like MCH due to intermolecular pi-pi-stacking and hydrogen-bonding interactions. Microscopic studies reveal formation of columnar aggregates in apolar solvent MCH, thus this molecule lacks the ability to form gels in this solvent, but form highly fluorescent lyotropic mesophases at higher concentration. On the other hand, in polar solvents like acetone and dioxane, participation of the solvent molecules in hydrogen bonding significantly reduced the aggregation propensity but enforced the gel formation. The outstanding fluorescence properties of the dye in both J-aggregated viscous lyotropic mesophases and bulk gel phases suggest very promising applications in photonics, photovoltaics, security printing, or as fluorescent sensors. In chapter 6, we did some studies on combining PBI molecules with inorganic gold nanorods. Gold nanorods were synthesized photochemically. By virtue of the thioacetate functionalized PBIs, the rods were connected end to end to form gold nanochains, which were characterized by absorption spectra and TEM measurement. Such chromophore-nanorod hybrids might be applied to guide electromagnetic radiation based on optical antenna technology. KW - Perylenderivate KW - Selbstorganisation KW - Wasserstoffbrückenbindung KW - Gelieren KW - Supramolekulare Struktur KW - organogelator KW - perylene bisimide KW - self-assembly Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-43727 ER -