TY - JOUR A1 - Leininger, H. A1 - Lanzendörfer, F. A1 - Christl, Manfred T1 - Über die Reduktion des Benzvalenozonids zum cis-1,3-Cyclobutandimethanol mit LiAlH\(_4\) N2 - No abstract available KW - Organische Chemie Y1 - 1983 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58130 ER - TY - JOUR A1 - Christl, Manfred A1 - Herbert, R. T1 - Unusual Carbon Shielding Effects of Cyclopropanes and Double Bonds in Strained Bicyclo[3.1.0]hexanes and Cyclopentenes N2 - Carbon-13 shieldings and one-bond \(^{13}\)C-H coupling constants of bicydo[2.1.1]hexane, bicydo[2.l.l]hex- 2-ene, tricydo[3.1.1.0\(^{2.4}\)]heptane and benzvalene are presented and compared. to the data of related. compounds. H a bicydo[3.1.0]hexane system is part of a rigid skeleton, the cydopropane ring exerts spedfk: 'Y substituent eflects of two ldnds. In the case of the bicyclobexane boat form an upfield shift of the C-3 signal is observed and in tbe esse of the chair form a downfield shift of 15-20 ppm. Compared to the corresponding cydopentanes the double bond in strained cydopentenes causes downfield shifts of the C-4 absorption. 1bis eftect increases witb increasing strain, reaching 8 45.9 ppm maximum in benzvalene. Hence it is tbe only known bicydo[l.l.O]butane baving 8 reversed order of carbon shieldings. The downfield shifts are e:xplained by means of simple orbital interaction schemes. KW - Organische Chemie Y1 - 1979 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58038 ER - TY - JOUR A1 - Christl, Manfred A1 - Lang, R. T1 - Tricyclo[5.1.0.0\(^{2,8}\)]octa-3,5-diene (Octavalene) N2 - No abstract available KW - Organische Chemie Y1 - 1982 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58124 ER - TY - JOUR A1 - Christl, Manfred A1 - Kraft, A. T1 - Tricyclo[3.1.1.0\(^{2,6}\)]hexandion (the Valen of o-Benzochinons), Bicyclo[2.1.1]hexan-2,3-dion and Valene of a Chinoxalins, of Phenazins and of a Benzophenazine N2 - No abstract available KW - Organische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58462 ER - TY - JOUR A1 - Christl, Manfred A1 - Heinemann, U. A1 - Kristof, W. T1 - Thermal Rearrangement of Some Endo-Endo'-Bridged Bicyclo[1.1.0]butanes N2 - No abstract available KW - Organische Chemie Y1 - 1975 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-57967 ER - TY - JOUR A1 - Wortmann-Saleh, D. A1 - Engels, Bernd A1 - Peyerimhoff, S. D. T1 - Theoretical Study of the Reaction O(\(^3\)P) + C\(_2\)H\(_4\) and comparison with the \(^3\)CH\(_3\) + C\(_2\)H\(_4\) Reaction N2 - The minimum energy path for the reaction O(\(^3\)P\(_g\)) + C\(_2\)H\(_4\)(\(^1\)A\(_g\)) has been calculated by optimizing all relevant geometrical parameters along the approach of oxygen to ethene. A barrier of 4.7 kcal/mol in the \(^3\)A"( ... 9a'\(^2\)- 10a'3a") potential energy surface and an energy difference of 14.4 kcal/mol between the product and the fragments is found at the multireference-configuration interaction level. The corresponding values at the lower-level treatment CASSCF are 9 kcal/mol for the barrier and 9 kcal/mol for the depth of the potential; this shows the importance of inclusion of electron correlation. The barrier for CH\(_2\) rotation for the lowestenergy structure (asymmetric OC\(_2\)H\(_4\)) is around 5 kcal/mol. The energy gap to the first excited state \(^3\)A'( ... 9a'l0a'3a'12) is found tobe 3.6 kcal/mol in MRD-CI calculations at the ground-state minimum. Comparison with \(^3\)CH\(_2\) + C\(_2\)H\(_4\) shows that in this system the lowest-energy surface is \(^3\)A', i.e., the state which is the excited state in 0 + C\(_2\)H\(_4\). This difference in energy ordering of \(^3\)A' and \(^3\)A" states results from the fact that the p\(_x\), p\(_y\), p\(_z\) degeneracy of oxygen orbitals is lifted in \(^3\)CH\(_2\)leading to b\(_1\), b\(_2\). and a\(_1\) MOs whereby the lowest b\(_2\) (a") remains doubly occupied; as a consequence, the reaction pattem between the oxygen and \(^3\)CH\(_2\) approach is different, which is also quite apparent in the calculated charge transfer. KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59076 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. A1 - Skell, P.S. T1 - Theoretical study of the potential energy surface governing the stereochemistry in ClC\(_2\)H\(_4\) reactions N2 - Large-scale multireference configuration interaction calculations in a double·t·type AO basis including polarization functions are carried out for the potential surface of the ClC\(_2\)H\(_4\9 system. The charge distribution for various extreme points of the surface is discussed. The absolute minimum is found for an asymmetric ClC2H4 structure. The symmetrical bridged nuclear conformation is also found to be stable with respect to dissociation into Cl + C\(_2\)H\(_4\)• The activation energy for rotation about the C-C axis is calculated tobe around 18 kJ/mol, which is comparable tothat for the 1,2 migration {around 26 kJ/mol). The stereochemistry is governed by the fact that addition of CI to C\(_2\)H\(_4\) (or dissociation) is a two-step reaction proceeding through a symmetrica1 intermediate. The direct addition pathway possesses a small barrier of about 8 kJ jmol. KW - Organische Chemie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58851 ER - TY - JOUR A1 - Huang, M.-B. A1 - Suter, H. U. A1 - Engels, Bernd T1 - Theoretical Study of the Dimethylamino Radical (CH\(_3\))\(_2\)N and its protonated cation (CH\(_3\))\(_2\)NH\(^+\) N2 - In the present work the dimethylamino radical ( ( CH\(_3\)) \(_2\)N) and its protonated cation ( ( CH\(_3\))\(_2\)NH\(^+\)) are investigated by means of ab initio methods. The geometries of various conformations of both compounds are obtained with UMP2/6·31 G** calculations, while the hyperfine structure and its dependence on the geometry is studied using the MRD-Cl/B\(_K\) method. The two molecules are compared to study the inftuence of the protonation on geometry and hyperfine structure. The effects of the rotational barriers on the hyperfine structures of (CH\(_3\))\(_2\)N, (CH\(_3\)CH\(_2\))\(_2\)N and ( (CH\(_3\))\(_2\)CH)\(_2\)N will be discussed. KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59047 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S. D. T1 - Theoretical study of the bridging in β-Halo Ethyl N2 - Large-acale multi-reference configuration interaction (MRD-CI) calculations in a quite flexible AO basis are employed to study the energy hypersurface for the reaction intermediates XC\(_3\)H\(_4\) with X = Cl, Br and F. Particular emphasis is therby placed on determining the equilibrium conformations, the CH\(_2\) rotation barrier and the energy surface for a possible bridging (shuttling motion (1a] of X between the two carbon centers). The absolute minimum in the potential energy surface is found in all three cases for the asymmetric ß-halo radical in general agreement with ESR data at an XCC angle of ca. 110°, a c-c separation somewhat shorter than a single bond and an approximate sp3 type hybridization (\(\alpha _2 \approx \) 135-140°). In FC\(_2\)H\(_4\) the energy difference between the minimum in the symmetric conformation and the absolute minimum is found to be more than 30 kcal so that shuttling seems impossible in agreement with experimental findings. In BrC\(_2\)H\(_4\) the difference between these two potential minima is only between 1-2 kcal, i.e., smaller than the barrier to CH\(_2\), rotation, so that· shuttling is favored, while ClC\(_2\)H\(_4\) takes an intermediate position between these extremes. The use of correlated wavefunctions is found to be quite important for such a study; the results are related to various kinetic studies of these radicals. KW - Organische Chemie Y1 - 1986 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58779 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - Theoretical study of FC\(_2\)H\(_4\) N2 - Large-scale multireference configuration interaction (MRD-CI) calculations in a quite flexible AO basis are employed to study the energy hypersurface for the reaction intermediate FC\(_2\)H\(_4\) • The reaction F + C\(_2\)H\(_4\) -> FC\(_2\)H\(_4\) as weil as the 1,2 migration of the fluorine atom in FC\(_2\)H\(_4\) is investigated. In addition the rotation around the CC bond in the optimum conformation is studied. The absolute minimum in the potential energy is found for the asymmetric structure but the symmetric structure is also found to be stable with respect to the dissociation, so that a shuttling of the fluorine atom is in principle possible but highly unlikely because ( l) the activation energy is high ( II 5-130 kJ fmol) and the saddle point lies only 4(}-50 kJ jmol below the dissociation Iimit of F + C\(_2\)H\(_4\) and (2) the competitive motion, i.e., rotation around the CC axis, is nearly free (I 1-17 kJ/mol). KW - Organische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58824 ER - TY - JOUR A1 - Suter, H. U. A1 - Engels, Bernd T1 - Theoretical investigation of ESR parameters: H\(_2\)CN and H\(_2\)CO\(^+\) N2 - The hyperfine structure of the two isoelectronic molecules H\(_2\)CN and H\(_2\)CO\(^+\) in their electronic ground state (X\(^2\)B\(_2\)) is studied. The influence of the atomic orbital (AO), basis sets, of the correlation treatment, and of the. equilibrium geometry on the obtained hyperfine propertles 1s - investigated. It is found that the multireference double excitation-configuration interaction (MRD-CI)/ BK treatment in which an MRD-CI wave function is corrected by a modified B\(_K\) method yields equivalent results to quadratic CI [QCISD(T)], coupled cluster single doubles [CCSD(T)), or Brueckner doubled [BD(T)]. Uncertainties in the equilibrium geometries are found to be the major source for discrepancies between theoretically and experimentally determined isotropic hyperfine coupling constants (hfccs). For the heavier centers, the calculated values of the isotropic hfccs agrees nearly perfectly with experimental values (\(\approx\) 1%-2%). The calculated values for the hydrogens are too low, but using the equilibrium structure suggested by Yamamoto and Sato [J. Chem. Phys. 96, 4157 ( 1992)], the best estimate deviates by less than 3%. KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59029 ER - TY - JOUR A1 - Christl, Manfred A1 - Lang, R. A1 - Herzog, C. T1 - The Synthesis of Octavalene (Tricyclo[5.1.0.0\(^{2,8}\)]octa-3,5-diene) and Several Substituted Octavalenes N2 - No abstract available KW - Organische Chemie Y1 - 1986 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58254 ER - TY - JOUR A1 - Reuter, W. A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - The Reaction of Singlet and Triplet Methylen with Ethene - A Multi-Reference CI Study N2 - Large-scale multireference configuration interaction (MRD-CI) calculations in a flexible atomic orbital (AO) basis are employed to study the reaction of C\(_2\)H\(_4\) with CH\(_2\) in its firSt triplet and singlet state. The minimum energy path (MEP) of both reactions is calculated, and different mechanisms are discussed. To examine the possible participation of the singlet state in the overall reaction starting from the triplet channel and terminating in the singlet-state c-C\(_3\)H\(_6\), various cuts through both hypersurfaces are calculated. lt is found that favorable interconversion from the trip1et to the singlet surface can only occur at !arge separations of the two fragments of CH2 and C\(_2\)H\(_4\). Experimental data considering the vibrational motion of CH\(_2\) in connection with the relative position of both surfaces are used to obtain an estimate for the overall barrier of the reaction. The height of the barrier is about 6 kcal/mol, while the barrier of the pure triplet reaction is calculated to be 7-9 kcal/mol. KW - Organische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58923 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - The hyperfine coupling constants of the X\(^3\)Σ\(^-\) state of NH : Influence of polarization functions and configuration space on the description of spin polarization N2 - The hyperfine coupling constants for the \(^3\)Σ\(-\) ground state of the NH molecule are determined by configuration interaction calculations whereby the infl.uence of polarization functions as weil as of the configuration space on the spin polarization mechanism is analysed. The dipolar part Au(N) and Au(H) can be obtained very reliably without much computational effort (A .. (N) == -45·3 MHz and A"(H) = -62·3 MHz). The value for the isotropic contribution a1.., in the best AO basis and MRD-CI treatment is - 64·5 MHz for H and 16·6 MHz for nitrogen compared to the corresponding experimental quantities of -66 MHz and 19 MHz respectively. Their determination depends on a subtle balance of the lu, 2u and 3u shell correlation description, whereby the dominant contribution to a1..,(H) results from the 2u shell. It is shown that the often good agreement of a110 values with experiment in a small basis singledouble configuration interaction treatment results from a cancellation of two errors. KW - Organische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58832 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. A1 - Karna, S.P. A1 - Grein, F. T1 - The hyperfine coupling constants of the five lowest states of CH : An ab initio MRD-CI study N2 - No abstract available KW - Organische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58807 ER - TY - JOUR A1 - Karna, S. A1 - Grein, F. A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - The hyperfine coupling constants of \(^{19}\)F\(_2\) N2 - The isotropic (a\(_{iso}\)) and dipolar (A\(_{dip}\)) hyperfine coupling constants of 19F2 were obtained from MRD-CI wave functions using a variety of basis sets. In series I, increasing numbers of d functions were added to a 5s4p contracted Huzinaga!Dunning basis. In series II, the 5s3p basis set was uncontracted in several steps until 9s5p was reached, to which were added from one to three d-polarization functions. Cl parameters (selectioo threshoids and the number of reference coofiguratioos) were also varied. A study of the R dependence of aiso and Adip was perfonned. The best values obtained at R\(_e\) are 260 G for a\(_{iso}\) and 308 G for A\(_{dip}\)• compared with experimental values of about 280 G for a;10 and 320 G for A\(_{dip}\)· KW - Organische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58817 ER - TY - JOUR A1 - Christl, Manfred A1 - Reuchlein, H. T1 - Synthesis and NMR Spectra of 2,3-Dihydro-1,3-methanoindene Derivatives and 1,2,3,5-Tetrahydro-1,3-methanopentalene N2 - No abstract available KW - Organische Chemie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58557 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 - THES A1 - Wehner, Marius T1 - Supramolecular Polymorphism in Homo- and Heterochiral Supramolecular Polymerizations T1 - Supramolekularer Polymorphismus in homo- und heterochiralen supramolekularen Polymerisationen N2 - The aim of the first part of this thesis was to investigate (R,R)-PBI as a model system for polymorphism at its origin by a supramolecular approach. The pathway complexity of (R,R)-PBI was fine-tuned by experimental parameters such as solvent, temperature and concentration to make several supramolecular polymorphs accessible. Mechanistic and quantum chemical studies on the kinetics and thermodynamics of the supramolecular polymerization of (R,R)-PBI were conducted to shed light on the initial stages of polymorphism. The second part of this work deals with mechanistic investigations on the supramolecular polymerization of the racemic mixture of (R,R)- and (S,S)-PBI with regard to homochiral and heterochiral aggregation leading to conglomerates and a racemic supramolecular polymer, respectively. N2 - Das Ziel des ersten Teils der Dissertation war es, anhand des Modellsystems (R,R)-PBI Polymorphismus mit Hilfe eines supramolekularen Ansatzes an dessen Ursprung zu untersuchen. Durch die Wahl geeigneter experimenteller Parameter wie Lösungsmittel, Temperatur und Konzentration wurden die komplexen Polymerisationspfade von (R,R)-PBI gezielt beeinflusst und verschiedene supramolekulare Polymorphe zugänglich gemacht. Mechanistische und quantenchemische Untersuchungen der Kinetik und Thermodynamik der supramolekularen Polymerisation von (R,R)-PBI wurden durchgeführt, um die Anfangsphase des Polymorphismus zu beleuchten. Der zweite Teil der vorliegenden Arbeit befasst sich mit mechanistischen Untersuchungen der supramolekularen Polymerisation der racemischen Mischung aus (R,R)- und (S,S)-PBI im Hinblick auf homo- und heterochirale Aggregation, welche zu Konglomeraten beziehungsweise einem racemischen supramolekularen Polymer führte. KW - Supramolekulare Chemie KW - Polymorphismus KW - Konglomerat KW - Aggregat KW - Organische Chemie KW - Aggregation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-211519 ER - TY - THES A1 - Wagner, Wolfgang T1 - Supramolecular Block Copolymers by Seeded Living Supramolecular Polymerization of Perylene Bisimides T1 - Supramolekulare Blockcopolymere von Perylenbisimiden mittels saat-induzierter lebender supramolekularer Polymerisation N2 - The research on supramolecular polymerization has undergone a rapid development in the last two decades, particularly since supramolecular polymers exhibit a broad variety of functionalities and applications in organic electronics, biological science or as functional materials (Chapter 2.1). Although former studies have focused on investigation of the thermodynamics of supramolecular polymerization (Chapter 2.2), the academic interest in the recent years shifted towards gaining insight into kinetically controlled self-assembly and pathway complexity to generate novel out-of-equilibrium architectures with interesting nanostructures and features (Chapter 2.3). Along this path, the concepts of seeded and living supramolecular polymerization were recently developed to enable the formation of supramolecular polymers with controlled length and low polydispersity under precise kinetic control (Chapter 2.4). Besides that, novel strategies were developed to achieve supramolecular copolymerization resulting in complex multicomponent nanostructures with different structural motives. The classification of these supramolecular copolymers on the basis of literature examples and an overview of previously reported principles to create such supramolecular architectures are provided in Chapter 2.5. The aim of the thesis was the non-covalent synthesis of highly desirable supramolecular block copolymers by the approach of living seeded supramolecular polymerization and to study the impact of the molecular shape of the monomeric building blocks on the supramolecular copolymerization. Based on the structure of the previously investigated PBI organogelator H-PBI a series of novel PBIs, bearing identical hydrogen-bonding amide side-groups in imide-position and various kind or number of substituents in bay-position, was synthesized and analyzed within this thesis. The new PBIs were successfully obtained in three steps starting from the respective bromo-substituted perylene-3,4:9,10-tetracarboxylic acid tetrabutylesters or from the N,N’-dicyclohexyl-1,7-dibromoperylene-3,4:9,10-tetracarboxylic acid bisimide. All target compounds were obtained in the final step by imidization reactions of the respective perylene tetracarboxylic acid bisanhydride precursors with N-(2-aminoethyl)-3,4,5-tris(dodecyloxy)-benzamide and were fully characterized by 1H and 13C NMR spectroscopy as well as high resolution mass spectrometry. The variation of bay-substituents strongly changes the optical properties of the monomeric PBIs which were investigated by UV/vis and fluorescence spectroscopy. The increase of the number of the methoxy-substituents provokes, for example, a red-shift of the absorption maxima concomitant with a decrease of extinction coefficients and leads to a drastic increase of the fluorescence quantum yields. Furthermore, the molecular geometry of the PBIs is also affected by variations of the bay-substituents. Thus, increasing the steric demand of the bay-substituents leads to an enlargement of the twist angles of the PBI cores as revealed by DFT calculations. Especially the 1,7-dimethoxy bay-substituted MeO-PBI proved to be very well-suited for the studies envisioned within this thesis. The self-assembly of this PBI derivative was analyzed in detail by UV/vis, fluorescence and FT-IR spectroscopy as well as atomic force microscopy (Chapter 3). These studies revealed that MeO-PBI forms in a solvent mixture of methylcyclohexane and toluene (2:1, v/v) kinetically trapped off-pathway H-aggregated nanoparticles upon fast cooling of a monomeric solution from 90 to 20 °C. However, upon slow cooling of the monomer solution fluorescent J-type nanofibers are formed by π π interactions and intermolecular hydrogen-bonding. The kinetically metastable off-pathway H-aggregates can be transformed into the thermodynamically more favored J-type aggregates by addition of seeds, which are produced by ultrasonication of the polymeric nanofibers. Interestingly, the living character of this seed-induced supramolecular polymerization process was proven by a newly designed multicycle polymerization experimental protocol. This living polymerization experiment clearly proves, that the polymerization can only occur at the “active” ends of the polymeric seed and that almost no recombination or chain termination processes are present. Hence, the approach of living supramolecular polymerization enables the formation of supramolecular polymers with controlled length and narrow polydispersity. In Chapter 4 the copolymerization of MeO-PBI with the structurally similar 1,7-dichloro (Cl-PBI) and 1,7-dimethylthio (MeS-PBI) bay-substituted PBIs is studied in detail. Both PBIs form analogous to MeO-PBI kinetically trapped off-pathway aggregates, which can be converted into the thermodynamically stable supramolecular polymers by seed-induced living supramolecular polymerization under precise kinetic control. However, the stability of the kinetically trapped aggregates of Cl-PBI and MeS-PBI is distinctly reduced compared to that of MeO-PBI, because the π-π-interactions of the kinetically metastable aggregates are hampered through the increased twisting of the PBI-cores of the former PBIs. UV/vis studies revealed that the two-component seeded copolymerization of the kinetically trapped state of MeO-PBI with seeds of Cl-PBI leads to the formation of unprecedented supramolecular block copolymers with A-B-A pattern by a living supramolecular polymerization process at the termini of the seeds. Remarkably, the resulting A-B-A block pattern of the obtained copolymers was clearly confirmed by atomic force microscopy studies as the respective blocks formed by the individual monomeric units could be distinguished by the pitches of the helical nanofibers. Moreover, detailed UV/vis and AFM studies have shown that by inverted two-component seed-induced polymerization, e.g., upon addition of seeds of MeO-PBI to the kinetically trapped aggregates of Cl-PBI, triblock supramolecular copolymers with B-A-B pattern can be generated. The switching of the block pattern could only be achieved because of the perfectly matching conditions for the copolymerization process and the tailored molecular geometry of the individual building blocks of both PBIs. These studies have demonstrated for the first time, that the block pattern of a supramolecular copolymer can be modulated by the experimental protocol through the approach of living supramolecular polymerization. Furthermore, by UV/vis analysis of the living copolymerization of MeO-PBI and MeS-PBI similar results were obtained showing also the formation of both A-B-A and B-A-B type supramolecular block copolymers. Although for these two PBIs the individual blocks could not be identified by AFM because the helical nanofibers of both PBIs exhibit identical helical pitches, these studies revealed for the first time that the approach of seeded living polymerization is not limited to a special pair of monomeric building blocks. In the last part of the thesis (Chapter 5) a systematic study on the two-component living copolymerization of PBIs with various sterical demanding bay-substituents is provided. Thus, a series of PBIs containing identical hydrogen-bonding amide groups in imide position but variable number (1-MeO-PBI, MeO-PBI, 1,6,7-MeO-PBI, 1,6,7,12-MeO-PBI) or size (EtO-PBI, iPrO-PBI) of alkoxy bay-substituents was investigated. The molecular geometry of the monomeric building blocks has a strong impact on the thermodynamically and even more pronounced on the kinetically controlled aggregation in solvent mixtures of MCH and Tol. While the mono- and dialkoxy-substituted PBIs form kinetically metastable species, the self-assembly of the tri- and tetramethoxy-substituted PBIs (1,6,7-MeO-PBI and 1,6,7,12-MeO-PBI) is completely thermodynamically controlled. The two 1,7-alkoxy substituted PBIs (EtO-PBI, iPrO-PBI) form very similar to MeO-PBI kinetically off-pathway H-aggregates and thermodynamically more favored J-type aggregates. However, the stability of the kinetically metastable state is drastically lower and the conversion into the thermodynamically favored state much faster than for MeO-PBI. In contrast, the monomethoxy-substituted PBI derivative (1-MeO-PBI) forms a kinetically trapped species by intramolecular hydrogen-bonding of the monomers, which can be transformed into the thermodynamically favored nanofibers by seeded polymerization. Importantly, the two-component seeded copolymerization of the kinetically trapped MeO PBI with seeds of other PBIs of the present series was studied by UV/vis and AFM revealing that the formation of supramolecular block copolymers is only possible for appropriate combinations of PBI building blocks. Thus, the seeded polymerization of the trapped state of the moderately core-twisted MeO-PBI with the, according to DFT-calculations, structurally similar PBIs (EtO-PBI and iPrO-PBI) leads to the formation of A-B-A block copolymers, like in the seeded copolymerization of MeO-PBItrapped with seeds of Cl-PBI and MeS-PBI already described in Chapter 4. However, by addition of seeds of the almost planar PBIs (H-PBI and 1-MeO-PBI) or seeds of the strongly core-twisted PBIs (1,6,7-MeO-PBI and 1,6,7,12-MeO-PBI) to the kinetically trapped state of MeO-PBI no block copolymers can be obtained. The mismatching geometry of these molecular building blocks strongly hampers both the intermolecular hydrogen-bonding and the π-π-interactions between the two different PBIs and consequently prevents the copolymerization process. Furthermore, the studies of the two-component seeded copolymerization of the kinetically trapped species of 1-MeO-PBI with seeds of the other PBIs also corroborated that a precise shape complementarity is crucial to generate supramolecular block copolymers. Thus, by addition of seeds of H-PBI to the kinetically trapped monomers of 1-MeO-PBI supramolecular block copolymers were generated. Both PBIs exhibit an almost planar PBI core according to DFT-calculations leading to strong non-covalent interactions between these PBIs. This perfectly matching geometry of both PBIs also enables the inverted seeded copolymerization of the kinetically trapped monomers of H-PBI with 1-MeO-PBIseed concomitant with a switching of the block pattern of the supramolecular copolymer from A-B-A to B-A-B type. In contrast, the seeding with the moderately twisted (MeO-PBI, EtO-PBI and iPrO-PBI) and the strongly twisted PBIs (1,6,7-MeO-PBI and 1,6,7,12 MeO-PBI) has no effect on the kinetically trapped state of 1-MeO-PBI, because the copolymerization of these PBIs is prevented by the mismatching geometry of the molecular building blocks. In conclusion, the supramolecular polymerization and two-component seeded copolymerization of a series of PBI monomers was investigated within this thesis. The studies revealed that the thermodynamically and kinetically controlled self-assembly can be strongly modified by subtle changes of the monomeric building blocks. Moreover, the results have shown that living supramolecular polymerization is an exceedingly powerful method to generate unprecedented supramolecular polymeric nanostructures with controlled block pattern and length distribution. The formation of supramolecular block copolymers can only be achieved under precise kinetic control of the polymerization process and is strongly governed by the shape complementarity already imparted in the individual components. Thus, these insightful studies might enable a more rational design of monomeric building blocks for the non-covalent synthesis of highly complex supramolecular architectures with interesting properties for possible future applications, e.g., as novel functional materials. N2 - Das Forschungsgebiet der supramolekularen Polymerisation hat sich in den letzten Jahrzehnten sehr rasch entwickelt, zumal da supramolekulare Polymere eine Fülle an Anwendungsmöglichkeiten in der organischen Elektronik, der Biologie oder als Funktionsmaterialen bieten (Kapitel 2.1). Während frühere Studien den Fokus auf die Untersuchung der Thermodynamik der supramolekularen Polymerisation gelegt haben (Kapitel 2.2), hat sich das akademische Interesse in jüngster Zeit dahingehend verschoben, Einblicke in kinetisch kontrollierte Selbstassemblierungsprozesse zu erhalten, um neuartige Strukturen mit faszinierenden Eigenschaften zu generieren (Kapitel 2.3). Im Zuge dieser Entwicklung wurde das Konzept der Saat-induzierten und der lebenden supramolekularen Polymerisation entwickelt, welche die Bildung von supramolekularen Polymeren mit geringer Polydispersität in kinetisch kontrollierten Prozessen ermöglichen (Kapitel 2.4). Des Weiteren wurden neue Strategien zu Erzeugung von Nanostrukturen entwickelt, die aus verschiedenen Komponenten aufgebaut sind und somit neue komplexe Strukturmotive zeigen. Eine Einteilung dieser supramolekularen Copolymere anhand einiger Literaturbeispiele und eine kurze Übersicht über die bisherigen Methoden, solche supramolekularen Strukturen zu erzeugen ist in Kapitel 2.5 dargestellt. Das Ziel der Doktorarbeit war die nicht-kovalente Synthese von erstrebenswerten supramolekularen Blockcopolymeren mittels lebender Saat-induzierter Polymerisation und zu erforschen, wie die molekulare Form der Monomerbausteine die supramolekulare Copolymerisation beeinflusst. Basierend auf der Molekülstruktur des zuvor untersuchten Perylenbisimidfarbstoffes H-PBI wurden in dieser Arbeit eine Reihe von neuen Perylenbisimiden mit identischen Amid-Seitengruppen in Imidposition und unterschiedlicher Art oder Anzahl von Buchtsubstituenten synthetisiert und charakterisiert. Die neuen Perylenbisimide wurden erfolgreich in drei Stufen durch neu entwickelte Syntheserouten erhalten, wobei von den jeweiligen Brom substituierten Perylen-3,4:9,10-tetracarbonsäuretetrabutylestern oder von N,N‘ Dicyclohexyl-1,7-dibromperylen-3,4:9,10-tetracarbonsäurebisimid ausgegangen wurde. Alle Zielverbindungen wurden im letzten Syntheseschritt mittels einer Imidisierungsreaktion der jeweiligen Perylenbisanhydridvorstufen mit N (2-Aminoethyl)-3,4,5-tris(dodecyloxy)benzamid erhalten und mittels 1H- und 13C NMR-Spektroskopie sowie mit hochauflösender Massenspektrometrie charakterisiert. Die Variation der Buchtsubstituenten hat einen starken Einfluss auf die optischen Eigenschaften der Perylenbisimidmonomere, was mittels UV/vis- und Fluoreszenzspektroskopie untersucht wurde. Die ansteigende Zahl der Methoxysubstituenten verursacht zum Beispiel eine Rotverschiebung der Absorptionsmaxima, welche mit einer Abnahme der Extinktionskoeffizienten einhergeht, und führt zu einem starken Anstieg der Fluoreszenzquantenausbeute. Außerdem wird auch die Molekülgeometrie der Perylenbisimide durch die Variation der Buchtsubstituenten beeinflusst. Mittels DFT-Rechnungen konnte gezeigt werden, dass eine Zunahme des sterischen Anspruchs der Buchtsubstituenten eine Vergrößerung des Torsionswinkels der Perylenbisimidkerne zur Folge hat. Als besonders geeignet für die im Rahmen dieser Arbeit anvisierten Studien erwies sich das mit zwei Methylgruppen in 1,7-Buchtposition substituierte MeO-PBI. Die Selbstassemblierung dieses 1,7-Dimethoxy-substituierten Perylenbisimid-Derivates wurde mit Hilfe von UV/vis-, Fluoreszenz- und FT-IR-Spektroskopie sowie mittels Rasterkraftmikroskopie detailliert analysiert (Kapitel 3). Diese Studien haben gezeigt, dass MeO-PBI in einem Lösungsmittelgemisch aus Methylcyclohexan und Toluol (2:1, v/v) in einem kinetisch kontrollierten Prozess durch schnelles Abkühlen der Monomerlösung von 90 auf 20 °C „off-pathway“ Nanopartikel ausbildet. Durch langsames Abkühlen der Monomerlösung entstehen hingegen fluoreszierende, J-aggregierte Nanofasern aufgrund von π-π-Wechselwirkungen und intermolekularen Wasserstoffbrückenbindungen. Die kinetisch metastabilen „off-pathway“ H-Aggregate können durch Zugabe einer polymeren J-Aggregat-Saat, welche durch eine Behandlung der polymeren Nanofasern mit Ultraschall gewonnen werden kann, in die thermodynamisch begünstigten J-Aggregate transformiert werden. Außerdem wurde der lebende Charakter dieser supramolekularen Saat-induzierten Polymerisation durch ein neu entworfenes multizyklisches Versuchsprotokoll nachgewiesen. Diese Experimente zur lebenden supramolekularen Polymerisation zeigen deutlich, dass der Polymerisationsprozess nur an den „aktiven“ Enden der polymeren Saat stattfinden kann und dass außerdem kaum Rekombinations- oder Kettenterminationsprozesse auftreten. Folglich ermöglicht die Methode der lebenden supramolekularen Polymerisation die Synthese von supramolekularen Polymeren mit kontrollierbarer Polymerlänge und geringer Polydispersität. In Kapitel 4 wird die Copolymerisation von MeO-PBI mit den strukturell ähnlichen 1,7 Dichlor- (Cl-PBI) und 1,7-Dimethylthiosubstituierten (MeS-PBI) Perylenbisimiden ausgeführt. Beide neuen Perylenbisimide bilden analog zu MeO-PBI „off-pathway“ Aggregate, die durch Saatzugabe in einem kinetisch kontrollierten Prozess in die thermodynamisch stabileren supramolekularen Polymere umgewandelt werden können. Die Stabilität der kinetisch gefangenen Aggregate von Cl-PBI und MeS-PBI ist jedoch verglichen mit den metastabilen Aggregaten von MeO-PBI deutlich geringer, da die π π Wechselwirkungen zwischen den molekularen Bausteinen aufgrund des vergrößerten Torsionswinkels der Peryleneinheiten stark reduziert sind. UV/vis-spektroskopische Studien zeigen, dass die Saat-induzierte Copolymerisation des kinetisch gefangenen Zustandes von MeO-PBI mit der Saat von Cl-PBI durch einen lebenden Kettenwachstumsprozess an den Polymerenden der Saat zur Ausbildung von neuartigen supramolekularen Blockcopolymeren mit A B A Blockstruktur führt. Die erzeugte A-B-A-Blockstruktur der erhaltenen Copolymere konnte eindeutig mittels Rasterkraftmikroskopie bestätigt werden, da die jeweiligen Polymerblöcke bestehend aus den einzelnen monomeren Einheiten anhand der Ganghöhe der helikalen Nanofasern unterschieden werden können. Ausführliche UV/vis- und Rasterkraftmikroskopiestudien haben außerdem demonstriert, dass, zum Beispiel durch Zugabe der Saat von MeO-PBI zu den kinetisch gefangenen Aggregaten von Cl PBI, Triblockcopolymere mit B-A-B-Blockstruktur in einer invertierten Saat-induzierten Zweikomponenten-Copolymerisation, erzeugt werden können. Dieser Wechsel der Blockstruktur kann nur durch perfekt abgestimmte Bedingungen für die Copolymerisation und bei übereinstimmender Molekülgeometrie der Monomereinheiten erreicht werden. Diese Studien zeigen erstmals, dass die Blockstruktur der supramolekularen Polymere durch das Versuchsprotokoll der lebenden supramolekularen Polymerisation variiert werden kann. Des Weiteren lieferten UV/vis-spektroskopische Untersuchungen der lebenden Copolymerisation von MeO-PBI und MeS-PBI ähnliche Ergebnisse, was darauf hindeutet, dass ebenfalls supramolekulare Blockcopolymere mit A-B-A- und B-A-B-Struktur gebildet werden können. Obwohl die einzelnen Polymerblöcke in diesem Fall wegen der identischen Helixganghöhe der Nanofasern nicht zugeordnet werden konnten, so zeigten diese Experimente doch, dass die Methode der Saat-induzierten lebenden Polymerisation nicht auf ein spezielles Paar von Monomerbausteinen limitiert ist. Im letzten Abschnitt der Doktorarbeit (Kapitel 5) wird eine systematische Studie der lebenden Zweikomponenten-Copolymerisation von Perylenbisimiden mit unterschiedlich sterisch anspruchsvollen Buchtsubstituenten dargestellt. Dementsprechend wurde eine Reihe von Perylenbisimiden mit identischen Amidseitenketten, aber unterschiedlicher Anzahl (1-MeO-PBI, MeO-PBI, 1,6,7-MeO-PBI, 1,6,7,12-MeO-PBI) oder Größe (EtO PBI, iPrO-PBI) der Alkoxybuchtsubstituenten untersucht. Die Molekülgeometrie der Monomereinheiten hat einen starken Einfluss auf das thermodynamisch und mehr noch auf das kinetisch kontrollierte Aggregationsverhalten in Lösungsmittelgemischen aus Methylcyclohexan und Toluol. Während die mono- und dialkoxysubstituierten Perylenbisimide kinetisch metastabile Zustände ausbilden, findet die Selbstassemblierung der tri- und tetramethoxysubstituierten Perylenbisimide (1,6,7-MeO-PBI, 1,6,7,12 MeO PBI) vollständig unter thermodynamischer Kontrolle statt. Die zwei 1,7 alkoxysubstituierten Perylenbisimide (EtO-PBI, iPrO-PBI) bilden analog zu MeO PBI sowohl kinetische „off-pathway“ H-Aggregate als auch thermodynamisch begünstigte J Aggregate. Verglichen mit MeO-PBI ist jedoch die Stabilität der kinetisch metastabilen Zustände von EtO-PBI und iPrO-PBI viel geringer und die Umwandlung in die thermodynamisch stabileren Aggregate geschieht daher viel schneller. Das monomethoxysubstituierte Perylenbisimid-Derivat (1 MeO PBI) bildet im Gegensatz dazu kinetisch gefangene Monomere durch intramolekulare Wasserstoffbrücken-bindungen, welche sich durch Saat-induzierte Polymerisation in die thermodynamisch begünstigteren Nanofasern transformieren lassen. Die Saat-induzierte Zweikomponenten-Copolymerisation des kinetisch gefangenen Zustands von MeO-PBI durch Saatzugabe der anderen Perylenbisimide der Reihe wurde mittels UV/vis-Spektroskopie und Rasterkraftmikroskopie analysiert. Diese Studien eröffneten, dass die Bildung von supramolekularen Blockcopolymeren nur für geometrisch passende Kombinationen der Perylenbisimide möglich ist. Dementsprechend führt die Saat-induzierte Polymerisation des kinetisch gefangenen Zustands von MeO-PBI mit den, laut DFT Rechnungen, strukturell ähnlichen Perylenbisimiden (EtO-PBI, iPrO-PBI) zur Bildung von A B A Blockcopolymeren, analog zu dem im Kapitel 4 beschriebenem Fall der Saat induzierten Copolymerisation mit Cl-PBI und MeS-PBI. Die Zugabe einer Saat der planaren Perylenbisimide (H-PBI, 1-MeO-PBI) oder der Perylenbisimide mit stark verdrehten Perylenkernen (1,6,7-MeO-PBI, 1,6,7,12 MeO PBI) zum kinetisch metastabilen Zustand von MeO-PBI führt dagegen nicht zur Bildung von Blockcopolymeren. Der Unterschied in der Molekülgeometrie dieser Monomerbausteine vermindert erheblich die Stärke der π π Wechselwirkungen zwischen den unterschiedlichen Perylenbisimiden und verhindert daher deren Copolymerisation. Die Studien zur Saat induzierten Zweikomponenten-Copolymerisation des kinetisch gefangenen Zustands von 1-MeO-PBI mit den anderen Perylenbisimiden der Serie bestätigte weiterhin, dass eine genaue Übereinstimmung der molekularen Geometrie entscheidend für die Erzeugung von supramolekularen Blockcopolymeren ist. Durch Zugabe der Saat von H-PBI zum kinetisch metastabilen Zustand von 1-MeO-PBI konnten folglich supramolekulare Blockcopolymere generiert werden. Mittels DFT-Rechnungen wurde gezeigt, dass beide Perylenbisimide einen relativ planaren Perylenkern aufweisen, was zu sehr starken, nicht-kovalenten Wechselwirkungen zwischen diesen beiden Monomerbausteinen führt. Die übereinstimmende Geometrie beider Perylenbisimide ermöglicht auch die invertierte Saat-induzierte Copolymerisation des kinetisch gefangenen Zustands von H-PBI mit 1-MeO-PBISaat, was mit einem Wechsel der Blockstruktur des supramolekularen Blockcopolymers von A B A zu B A B einhergeht. Die Zugabe der Saat der mäßig (EtO-PBI, iPrO PBI) und stark verdrehten Perylenbisimide (1,6,7-MeO-PBI, 1,6,7,12-MeO-PBI) hat im Gegensatz dazu keinen Effekt auf den kinetisch gefangenen Zustand von 1-MeO-PBI, da die Copolymerisation dieser Perylenbisimide durch die Nichtübereinstimmung der Molekülgeometrie der Monomerbausteine verhindert wird. Abschließend lässt sich zusammenfassen, dass in dieser Arbeit die supramolekulare Polymerisation und Saat-induzierte Zweikomponenten-Copolymerisation einer Reihe von Perylenbisimidmonomeren untersucht worden ist. Die Studien haben demonstriert, dass die thermodynamisch und kinetisch kontrollierten Selbstassemblierungsprozesse durch subtile Änderungen der Monomerbausteine stark variiert werden können. Außerdem zeigen die Ergebnisse, dass die lebende supramolekulare Polymerisation eine sehr leistungsfähige Methode zur Erzeugung von neuartigen supramolekularen, polymeren Nanostrukturen mit kontrollierter Blockstruktur und Längenverteilung darstellt. Die Bildung dieser supramolekularen Blockcopolymere kann nur unter präziser kinetischer Kontrolle erreicht werden und ist durch die Komplementarität der einzelnen molekularen Komponenten stark beeinflusst. Diese aufschlussreichen Studien bilden möglicherweise die Grundlage für ein rationaleres Design neuer Monomerbausteine zur nicht-kovalenten Synthese von hochkomplexen, supramolekularen Strukturen mit potentiell einzigartigen Eigenschaften für mögliche Anwendungen, beispielsweise als neuartige Funktionsmaterialien. KW - Supramolekulare Chemie KW - Perylenbisdicarboximide KW - Lebende Polymerisation KW - Aggregation KW - Supramolecular Block Copolymers KW - Perylenbisimides KW - Kinetic Self-assembly KW - Living Polymerisation KW - Organische Chemie Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193004 ER - TY - JOUR A1 - Funken, K. A1 - Engels, Bernd A1 - Peyerimhoff, S.D. A1 - Grein, F. T1 - Study of the hyperfine coupling constants of the moleculs NH2, NHD and ND2 N2 - In the present paper we c:alculate tbe magnetic hyperfine couplina constants (hfcc) ai.ID and A11 of the ground states of the isotopes NH2, NHD and ND2 using truncated MR..CI methods. Differences from other theoretical methocls and shortoominp of the truncated Cl approach in calculating tlj10 are studied. Polarization effects wbich detennirae ailo. as weU as a simple model to describe the dipolar hfcc's, are discussed. All results are in. excellent aareement with experimental data. lt is shown that ab initio methods are able to obtain reliable values for otf-diaaonal values of A41 which are difficult to measure experimentaDy. KW - Organische Chemie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58875 ER - TY - JOUR A1 - Engels, Bernd A1 - Peric, M. A1 - Reuter, W. A1 - Peyerimhoff, S.D. A1 - Grein, F. T1 - Study of the hyperfine coupling constants \(^{14}\)N and \(^1\)H) of the NH\(_2\) molecule in the X\(^2\)B\(_1\) ground state and the A\(^2\)A\(_1\) excited state N2 - The hyperfine coupling constants (hfcc) A\(_{iso}\) and A\(_{ij}\) are calculated for the atoms of NH\(_2\) in its, two lowest-lying electronk states at various molecular geometries by means of the ab initio multireference configuration interaction .method. The vibronically averaged values of the hfccs for the K = 0 and 1 levels in \(^{14}\)N \(^1\)H\(_2\) in the energy range up to 20 000 cm\(^{-1}\) are computed. Polarization elfects which determine A\(_{iso}\) as well as a simple model to describe the dipolar hfccs are discussed. All resrilts are in excellent agreement with experimental data. KW - Organische Chemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58937 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - Study of the 1s and 2s shell contributions to the isotropic hyperfine coupling constant in nitrogen N2 - The istropic part of the hyperfine coupling constant is investigated by means of multireference configuration interaction calculations employing Gaussian basis sets. A detailed study of the 1s and 2s spin polarisation in the nitrogen atom and the NH molecule shows that the structure of the lower-energy space of the unoccupied orbitals is essential for the results. A contraction of the Gaussian basis is possible without loss of accuracy if enough flexibility is retained to describe the main features of the original space of unoccupied functions. Higher than double excitations are found to be non-negligible for the description of α\(_{iso}\). KW - Organische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58793 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - Study of orbital transformations in configurational interaction calculation of hyperfine coupling in nitrogen and CH molecule N2 - Multi-reference configuration interaction calculations employing various orbital transformations are undertaken to obtain the isotropic hyperfine coupling constant a\(_{iso\) in nitrogen and a\(_{iso\) (H) in the CH molecule. The natural orbital (NO) basis is found to be more effective than the simple RHF-MO basis; the most obvious is a basis of spin natural orbitals (SNO). It is found that a\(_{iso\) is approached from opposite sides in the NO and 2s shell SNO basis if the CI expansion is increased. Both results are within a few percent of the full CI Iimit for the nitrogen atorn (in the given AO basis) and the experimental value for Hin the CH radical. Various features ofthe SNO are discussed. KW - Organische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58847 ER - TY - JOUR A1 - Engels, Bernd T1 - Study of influences of various excitation classes on ab initio calculated isotropic hyperfine coupling constants N2 - Reliable prediction of the isotropic hyperfine coupling constant A\(_{iso}\) is still a difficult task for ab initio calculations. Strang dependence on the method employed for its ca1culation has been found. Within a CI ansatz A\(_{iso}\) is considerably affected by the excitation classes taken into account within the CI calculation. In the present work the influence of various excitation classes on A\(_{iso}\) is examined. Calculations including all single, double, triple and a large part of the quadruple excitations are performed and the individual effects of the excitation classes are studied. It is found that the surprisingly good agreement found for S-CI treatments is due to large error cancellations. The importance of higher than double excitations arises from their indirect influence on the single excitations. KW - Organische Chemie KW - Spin density KW - Hyperfine coupling constants KW - Influence of excitation classes KW - Indirect and direct contributions to Aiso Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58973 ER - TY - JOUR A1 - Markgraf, J. H. A1 - Cort, J. R. A1 - Davis, H. A. A1 - Lindeman, N. I. A1 - Myers, C. R. A1 - Kraft, A. A1 - Christl, Manfred T1 - Strained Heterocyclic Systems. 20. Basicities of Bicyclic Quinoxalines N2 - No abstract available KW - Organische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58584 ER - TY - JOUR A1 - Volz, H. A1 - Shin, J.-H. A1 - Prinzbach, H. A1 - Babsch, H. A1 - Christl, Manfred T1 - Stability of Tricyclo[4.1.0.0\(^{2,7}\)]heptenyl-Cations N2 - No abstract available KW - Organische Chemie Y1 - 1978 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58001 ER - TY - JOUR A1 - Bentley, T. W. A1 - Norman, S. J. A1 - Gerstner, E. A1 - Kemmer, R. A1 - Christl, Manfred T1 - Solvolysis of Tricyclo[3.1.0.0\(^{2,6}\)]hex-3-yl and Bicyclo[2.1.1]hex-2-yl Sulfonates N2 - No abstract available KW - Organische Chemie KW - Bicyclo[1.1.0]butylcarbinyl sulfonates KW - solvolysis of KW - Cyclobutylcarbinyl sulfonates KW - Anchimeric assistance in solvolysis KW - Rearrangement of carbocations KW - Electron demand in ditosylates Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58689 ER - TY - JOUR A1 - Christl, Manfred A1 - Freund, S. A1 - Henneberger, H. A1 - Kraft, A. A1 - Hauck, J. A1 - Irngartinger, H. T1 - Several Polycyclic Valence Isomers of Dimethyl [14]Annulene-1,8-dicarboxylate. Reactivity of a "Nonconjugated" Bis(bicyclo[1.1.0]butane) N2 - Diels-Alder reaction of dimethyl 1,2,4,5-tetrazine-3,6-dicarboxylate (5) with benzvalene (4), norbornene, and norbornadiene afforded the azo compounds 7 and 8. Theseare derivatives of 2,3-diazabicyclo[2.2.2]oct-2-ene as is azo compound 3, which had been obtained previously from 5 and 2 equiv of benzvalene (4). The photochemical extrusion of nitrogen from 3, 7, and 8 has been studied. Whereas 7 and 8 on direct irradiation in benzene gave rise exclusively to the bicyclo[2.2.0]hexane derivatives 9 and 10, respectively, from 3 in addition to the bicyclo[2.2.0]hexane 11, the diolefin 1l was formed. Diolefin 12 has cisdouble bonds in the nine-membered ring and is fixed in a boat conformation in a manner so that the two bicyclobutane systems approach each other very closely. This geometry suggests the unusual ring opening of the intermediate 1,4-cyclohexanediyl diradical from a boat conformation, which arises by inversion of the primarily generated boat conformation. Sensitized photolysis of 3 as weilasthat of ll produced the saturated isomer 13 of 11 and 12. The proximity of the bicyclobutane systems in 1l causes unprecedented reactions leading to cage compounds. When ll was heated at 90 °C, a rearrangement to the pentacyclic product 10 took place. Utilization of tetradeuteriated substrate ll-d4 supported a pathway with two diradical intermediates. Behaving in a convcntional manncr, bicyclobutane 9 and bis(bicyclobutane) 11 took up 1 and 2 equiv of thiophenol most probably in a radical-chain addition to give the thioethers 28 and 19, respectively. In contrast, bis(bicyclobutane) ll was converted by 1 equiv of thiophenol into cagc compound 30 in a process involving both the strained a systems. Heating at 80 °C subjected 30 to a reversible Copc rearrangement, resulting in a 6:1 mixture of 31 and 30. When it was treated with bromine, 11 was transformed to cage compound 38. This addition is believed to proceed via a cationic intermediate. The structure of cage compound 10 was established by a singlc-crystal X-ray analysis of dialcohol 11 prepared from 20 and methyllithium. KW - Organische Chemie Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58413 ER - TY - JOUR A1 - Pratihar, Pampa A1 - Ghosh, Suhrit A1 - Stepanenko, Vladimir A1 - Patwardhan, Sameer A1 - Grozema, Ferdinand C. A1 - Siebbeles, Laurens D. A. A1 - Würthner, Frank T1 - Self-assembly and semiconductivity of an oligothiophene supergelator N2 - A bis(trialkoxybenzamide)-functionalized quaterthiophene derivative was synthesized and its self-assembly properties in solution were studied. In non-polar solvents such as cyclohexane, this quaterthiophene π-system formed fibril aggregates with an H-type molecular arrangement due to synergistic effect of hydrogen bonding and π-stacking. The self-assembled fibres were found to gelate numerous organic solvents of diverse polarity. The charge transport ability of such elongated fibres of quaterthiophene π-system was explored by the pulse radiolysis time resolved microwave conductivity (PR-TRMC) technique and moderate mobility values were obtained. Furthermore, initial AFM and UV-vis spectroscopic studies of a mixture of our electron-rich quaterthiophene derivative with the electron acceptor [6,6]-phenyl-C61-butyric acid methyl ester (PCBM) revealed a nanoscale segregated assembly of the individual building blocks in the blend. KW - Organische Chemie KW - charge transport; hydrogen bonding; oligothiophene; organogel; self-assembly Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-67817 ER - TY - JOUR A1 - Korth, H.-G. A1 - Müller, W. A1 - Sustmann, R. A1 - Christl, Manfred T1 - Rearrangement of Free Radicals, XII. ESR Spectroscopic Study of the Ring Opening of the Homobenzvalenyl Radical N2 - Abstraction of an allylic hydrogen atom in homobenzvalene (4) either in solurion by photolyticaßy generated tert-butoxyl radicals or in an adamantane matrix by X-rays produces the homobcnzvalenyl radical (5). which tbennally rearranps · to tbe tropylium ndical (1). In solution tbe activation cnergy for the rate determined step of the reaction sequence was detennined· to be 13.4 ± O.S kcal/mol. KW - Organische Chemie Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58376 ER - TY - THES A1 - Mahl, Magnus T1 - Polycyclic Aromatic Dicarboximides as NIR Chromophores, Solid-State Emitters and Supramolecular Host Platforms T1 - Polyzyklische aromatische Dicarboximide als NIR-Chromophore, Festkörperemitter und supramolekulare Wirtsplattformen N2 - The present thesis introduce different synthetic strategies towards a variety of polycyclic aromatic dicarboximides (PADIs) with highly interesting and diverse properties. This included tetrachlorinated, tetraaryloxy- and tetraaryl-substituted dicarboximides, fused acceptor‒donor(‒acceptor) structures as well as sterically shielded rylene and nanographene dicarboximides. The properties and thus the disclosure of structure‒property relationships of the resulting dyes were investigated in detail among others with UV‒vis absorption spectroscopy, fluorescence spectroscopy, cyclic voltammetry and single crystal X-ray analysis. For instance, some of the fused and substituted PADIs offer strong absorption of visible and near infrared (NIR) light, NIR emission and low-lying LUMO levels. On the contrary, intriguing optical features in the solid-state characterize the rylene dicarboximides with their bulky N-substituents, while the devised sterically enwrapped nanographene host offered remarkable complexation capabilities in solution. N2 - Die vorliegende Arbeit stellt verschiedene Synthesestrategien für eine Vielfalt an polyzyklischen aromatischen Dicarboximiden (PADIs) mit hochinteressanten und vielfältigen Eigenschaften vor. Dies beinhaltete tetrachlorierte, tetraryloxy- und tetraaryl-substituierte Dicarboximide, fusionierte Akzeptor‒Donor(‒Akzeptor)-Strukturen wie auch sterisch abgeschirmte Rylen- und Nanographen-Dicarboximide. Die Eigenschaften und damit die Offenlegung von Struktur‒Eigenschaftsbeziehungen der resultierenden Farbstoffe wurden unter anderem mittels UV‒vis Absorptionsspektroskopie, Fluoreszenzspektroskopie, Zyklovoltammetrie und Einkristallstrukturanalyse detalliert untersucht. Zum Beispiel bieten einige der fusionierten und substituierten PADIs eine starke Absorption von sichtbaren und nahen Infrarot-Licht (NIR), NIR-Emission und niedrigliegende LUMO-Niveaus. Im Gegensatz dazu sind die Rylendicarboximide mit ihren voluminösen N-Substituenten durch faszinierende optische Eigenschaften im Festkörper charakterisiert, wohingegen der konzipierte sterisch eingehüllte Nanographen-Wirt bemerkenswerte Komplexierungs-Fähigkeiten in Lösung zeigte. KW - Organische Chemie KW - Perylenbisdicarboximide KW - Farbstoff KW - Fluoreszenz KW - Supramolekulare Chemie KW - C-C coupling KW - dicarboximide KW - NIR chromophore KW - solid-state emitter KW - host-guest chemistry Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-234623 ER - TY - JOUR A1 - Christl, Manfred A1 - Braun, Max T1 - Photocycloadditions of Benzvalene N2 - No abstract available KW - Organische Chemie Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58506 ER - TY - THES A1 - Sapotta, Meike T1 - Perylene Bisimide Cyclophanes: Recognition of Alkaloids, Aggregation Behavior in Aqueous Environment and Guest-Mediated Chirality Transfer T1 - Perylenbisimidcyclophane: Alkaloiderkennung, Aggregationsverhalten in wässriger Umgebung und gastvermittelter Chiralitätstransfer N2 - Inspired by the fact that sufficient solubility in aqueous media can be achieved by functional substitution of perylene bisimides (PBIs) with polar groups, one of the essential aims of this thesis was the design and successful synthesis of the new water-soluble PBI cyclophanes [2PBI]-1m and [2PBI]-1p, which are appended with branched, hydrophilic oligoethylene glycol (OEG) chains. Subsequently, the focus was set on the elucidation of properties of PBI cyclophane hosts which are also of relevance for recognition processes in biological systems. The performance of the new amphiphilic PBI cyclophane [2PBI]-1p as synthetic receptors for various natural aromatic alkaloids in aqueous media was thoroughly investigated. Alkaloids represent a prominent class of ubiquitous nitrogen containing natural compounds with a great structural variety and diverse biological activity. As of yet, no chromophore host acting as a molecular probe for a range of alkaloids such as harmine or harmaline is known. In addition, the self-association behavior of cyclophane host [2PBI]-1m and its reference monomer in water was studied in order to gain insights into the thermodynamic driving forces affecting the self-assembly process of these two PBI systems in aqueous environment. Moreover, the chirality transfer upon guest binding previously observed for a PBI cyclophane was investigated further. The assignment of the underlying mechanism of guest recognition to either the induced fit or conformational selection model was of particular interest. N2 - Diese Arbeit befasste sich mit der Erforschung neuer Eigenschaften von Perylenbisimid-cyclophanwirten, zum Beispiel der Gast-Komplexierung in wässriger Umgebung (Kapitel 3.2) oder dem Einfluss von Wasser beim Selbstassemblierungsprozess einer dieser Wirte in Wasser (Kapitel 3.3). Weiterhin wurden der Chiralitätstransfer durch Gasterkennung und das der Wirt-Gast-Komplexbildung zugrunde liegende mechanistische Modell untersucht (Kapitel 3.4). ... KW - Supramolekulare Chemie KW - Perylenderivate KW - Wirt-Gast-Beziehung KW - Host-Guest-Chemistry KW - Self-Assembly in Water KW - Chirality Transfer KW - Chiralität KW - Selbstorganisation KW - Organische Chemie Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200028 ER - TY - THES A1 - Gsänger, Marcel T1 - Organic Thin-Film Transistors Based on Dipolar Squaraine Dyes T1 - Organische Dünnschichttransistoren von dipolaren Squarainfarbstoffen N2 - In summary, it can be stated that the herein studied set of acceptor-substituted squaraine dyes can be seen as potent candidates for OTFTs. Furthermore, their transistor performance can be easily tuned to obtain hole mobilities up to 0.45 cm2/Vs from solution and 1.3 cm2/Vs from sublimation by choosing adequate deposition techniques. In the end, a probable structural model derived from studies of the thin-film morphology by methods such as optical spectroscopy, AFM and X-ray even facilitated the clarification of the observed charge transport behavior. N2 - Zusammenfassend lässt sich sagen, dass die in dieser Arbeit untersuchten akzeptorsubstituierten Squarainfarbstoffe durchaus als leistungsfähige Kandidaten für den Einsatz in OTFT-Bauteilen angesehen werden können. Ihre Transistorleistung lässt sich durch geeignete Wahl der Abscheidungsmethode dahingehend einstellen, als dass sich Lochmobilitäten von bis zu 0.45 cm2/Vs mittels Lösungsprozessierung und von bis zu 1.3 cm2/Vs mittels Sublimation realisieren lassen. Schließlich ermöglichte die Untersuchung der Dünnfilmmorphologie mit Methoden wie der optischen Spektroskopie, Rasterkraftmikroskopie und Röntgenbeugung die Schlussfolgerung auf ein mutmaßliches Strukturmodell. KW - Organische Chemie KW - Squaraine KW - Organischer Feldeffekttransistor KW - Organic Chemistry KW - Squaraine KW - Organic Field-Effect Transistor KW - Organischer Halbleiter Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-80588 ER - TY - JOUR A1 - Metropoulos, B. A1 - Engels, Bernd A1 - Peyerimhoff, S.D. T1 - On the chemi-ionization reaction O + CH ----> HCO\(^+\)+ e\(^-\). Coollinear O-CH Approach N2 - We have investigated theoretically the importance of the O(\(^3\)P)+CH(a\(^4\sum^-\)) and the O(\(^3\)P)+CH(X\(^2\Pi\)) channels in the collinear chemi-ionization reaction O+CH->HCO\(^+\) +e\(^-\). We have found that both channels may lead to chemi-ionization via favorable Franck-Condon overlaps with the states ofthe ionic species. KW - Organische Chemie Y1 - 1993 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58963 ER - TY - JOUR A1 - Christl, Manfred A1 - Türk, M. A1 - Peters, K. A1 - Peters, E.-M. A1 - Schnering, H. G. von T1 - Octahydro-1,2,3:4,5,6-dimethenopentalene-2-carbonitrile, the First Derivative of a Yet-Unknown (CH)\(_{10}\)-Hydrocarbon N2 - No abstract available KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58731 ER - TY - JOUR A1 - Christl, Manfred A1 - Reich, H. J. A1 - Roberts, J. D. T1 - Nuclear Magnetic Resonance Spectroscopy. Carbon-13 Chemical Shifts of Methylcyclopentanes, Cyclopentanols, and Cyclopentyl Acetates N2 - No abstract available KW - Organische Chemie Y1 - 1971 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-57862 ER - TY - JOUR A1 - Christl, Manfred A1 - Roberts, J. D. T1 - Nuclear Magnetic Resonance Spectroscopy : Carbon-13 Chemical Shifts of Small Peptides as a Function of pH N2 - No abstract available KW - Organische Chemie Y1 - 1972 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-57885 ER - TY - JOUR A1 - Bentley, T. W. A1 - Christl, Manfred A1 - Norman, S. J. T1 - Methanesulfonate/p-Nitrobenzoate and p-Toluenesulfonate/p-Nitrobenzoate Rate Ratios. Solvolyses of 1-Adamantyl and Benzhydryl Substrates N2 - No abstract available KW - Organische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58599 ER - TY - THES A1 - Musch, Patrick T1 - Large-Scale Applications of Multi-Reference Methods in Chemistry and Development of a Multi-Reference Moller-Plesset Perturbation Theory Program T1 - Anwendung von Multireferenz-Methoden in der Chemie und Entwicklung eines Multireferenz Moller-Plesset-Störungstheorie-Programmes N2 - The first part of this work focuses on the characterization of systems which complex electronic structures require the application of multi-reference methods. The anti-tumor efficacy of the natural product Neocarzinostatin is based on the formation of diradicals and causes DNA cleavage and finally cytolysis. Computations on model systems performed in the present work show the influence of structural features on the mode of action and the efficacy of this antitumor-antibiotic. The cyclization of systems related to the enyne-cumulene framework like the enyne-allenes was investigated earlier and relations to the more unusual class of enyne-ketenes are analyzed. The class of enyne-ketenes (and also the enyne-allenes) show a broad spectrum of possible intermediates (diradicals, zwitterions, allenes). The electronic structures of these intermediates are also possible for the (heteroatom substituted) 1,2,4-cyclohexatriene and a model for their energetic sequence based on high-level multi-reference computations is proposed. In all three projects the application of multi-reference approaches is necessary to obtain a comprehensive picture of the reactivity and electronic structure but also shows up the limits inherently existing in the currently available programs with respect to the size of the molecules. In the second part, algorithms for a multi-reference Moller-Plesset perturbation theory (MR-MP2) program, designed to perform large-scale computations, were developed and implemented. The MR-MP2 approach represents the most cost-effective multireference ansatz and requires an efficient evaluation of the Hamilton matrix for which an algorithm is designed to instantly recognize only non-vanishing matrix elements and to employ the recurring interaction patterns of the Hamilton matrix. The direct construction of the Hamilton matrix is additionally parallelized to work on cluster environments. N2 - Der erste Teil der vorliegenden Arbeit beschäftigt sich mit der Charakterisierung von Systemen, deren komplexe elektronische Struktur die Anwendung von Multireferenz-Methoden erfordert. Die Antitumor-Wirkung des Naturstoffes Neocarzinostatin beruht auf der Bildung von Diradikalen und führt zur Spaltung der DNS und löst den Zelltod aus. Berechnungen an Modellsystemen zeigen den Einfluss der Strukturmotive auf die Wirkungsweise und die Wirksamkeit des Antitumor-Antibiotikums. Die Cyclisierung von Systemen, wie die Eninallene, die dem Enincumulen-Grundgerüst des aktivierten Neocarzinostatin-Chromophors verwandt sind, wurden schon in früheren Arbeiten untersucht und die Verwandtschaft zur ungewöhnlicheren Substanzklasse der Eninketene wird in dieser Arbeit analysiert. Diese Verbindungsklasse und die der Eninallene zeigen ein breites Spektrum an möglichen Intermediaten, wie Diradikale, Carbene, Zwitterionen und Allene, deren elektronische Strukturen auch bei (heterosubstituierten) 1,2,4 Cyclohexatrienen auftreten. Für diese Verbindungen wird ein Modell für die energetische Abfolge der elektronischen Strukturen auf Basis von hochwertigen Multireferenz-Rechnungen vorgeschlagen. In den drei aufgeführten Projekten ist die Anwendung von Multireferenz-Ansätzen notwendig um ein umfassendes Bild der Reaktivitäten und elektronischen Strukturen zu erhalten, zeigen im Hinblick auf große Moleküle aber auch die inhärenten Grenzen in den zur Zeit verfügbaren Programme auf. Im zweiten Teil der Arbeit wurden Algorithmen für ein Multireferenz-Moller-Plesset-Störungstheorie-Programmes (MR-MP2) entwickelt und implementiert. Der MR-MP2-Ansatz stellt den effizientesten Multireferenz-Ansatz dar und setzt eine geschickte und schnelle Berechnung der Hamilton-Matrix voraus. Hierfür ist ein Algorithmus konzipiert worden, der zum einen verschwindende Matrixelemente sofort erkennt und die sich wiederholenden Muster innerhalb der Hamilton-Matrix zu Nutze macht. Die Konstruktion der Hamilton-Matrix für das direkte Verfahren ist zudem für Clusterumgebungen parallelisiert. KW - Theoretische Chemie KW - Organische Chemie KW - Multireferenz KW - Moller-Plesset KW - Antitumor-Antibiotikum KW - Theoretical Chemistry KW - Organic Chemistry KW - Multi Reference KW - Moller-Plesset KW - Antitumor-antibitioc Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-7741 ER - TY - JOUR A1 - Bentley, T. W. A1 - Christl, Manfred A1 - Kemmer, R. A1 - Llewellyn, G. A1 - Oakley, J. E. T1 - Kinetic and Spectroscopic Characterisation of Highly Reactive Methanesulfonates. Leaving Group Effects for Solvolyses and Comments on Geminal Electronic Effects Influencing S\(_N\)1 Reactivity N2 - Highly reactive methanesulfonates (mesylates, ROMs) have been prepared from 1-phenylethanol. cyclohex-2-en-1-ol, diphenylmethanol and p-methoxybenzyl alcohol by treatment with methanesulfonyl chloride and triethylamine in dichloro- or trichloro-methane at - 20 to 0 °C. The mesylates. characterised in solution by \(^1\)H and \(^{13}\)C NMR at -20 °C, were obtained in satisfactory purity (ca. 95%) in cold solutions but they decomposed by reaction with chloride, triethylamine or the parent alcohol. Rate constants for solvolyses in aqueous acetone and aqueous ethanol have been determined by a fast response conductimetric method. Product selectivities for solvolyses of pmethoxybenzyl mesylate in aqueous ethanol and methanol at 0 °C have been determined by HPLC. From additional new or Iiterature kinetic data for solvolyses of corresponding bromides. chlorides and p-nitrobenzoates (OPNB). Br/CI. OMs/Br and OMs/OPNB rate ratios were calculated; the results are consistent with electronic effects stabilising the carbocationic transition states and increasing OMs/Br rate ratios for these SN 1 solvolyses; none of the evidence supports a geminal electronic effect on Br/CI rate ratios (e.g. caused by stabilisation of the initial state in pmethoxybenzyl chloride). Steric effects on ester /halide rate ratios for solvolyses of tertiary substrates are confirmed. Relative rates over a 10\(^{16}\) range for ester and halide leaving groups are evaluated for solvolyses of 1-phenylethyl substrates in 80% ethanol-water. updating previous work by Noyce et al. (1972). KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58748 ER - TY - THES A1 - Schmidt, Ralf T1 - Hamilton-Receptor-Mediated Self-Assembly of Merocyanine Dyes into Supramolecular Polymers T1 - Hamilton-Rezeptor-vermittelte Selbstorganisation von Merocyaninfarbstoffen zu supramolekularen Polymeren N2 - Die Selbstorganisation von Merocyaninfarbstoffen zu supramolekularen Polymeren wurde untersucht. Dabei konnte die Anordnung der hoch dipolaren Farbstoffe durch die Verwendung von verschiedenen Kombinationen von Wasserstoffbrückenbindungsmotiven und dipolarer Aggregation der Chromophore gesteuert. N2 - The self-assembly of merocyanine dyes into supramolecular polymers has been studied. Thereby, the spacial arrangement of the highly dipolar dyes has been controled by employing different combinations of hydrogen bonding motifs and dipolar aggregation of the chromophores. KW - Selbstorganisation KW - Merocyanine KW - Polymere KW - Supramolekulare Struktur KW - Organische Chemie KW - cooperativity KW - dipolar aggregation KW - dyes/pigments KW - hydrogen bond KW - self-assembly Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-56265 ER - TY - JOUR A1 - Engels, Bernd T1 - Estimation of the influence of the configurations neglected within truncated MR-CI wavefunctions on molecular properties N2 - Reliable prediction of the isotropic hyperfine coupling constant, a\(_{iso}\), is still a difficult task for ab initio calculations. Strong dependence on the method used for its calculation is found. Within a truncated multi-referencc ansatz a\(_{iso}\) is strongly affected by the size ofthe reference space and the nurober of terms in the truncated Cl expansion. In the present paperdifferent effects of the neglected Cl space are discussed. Modified B\(_K\) and A\(_K\) methods are used to estimate the contributions ofthe neglected configurations. lt can be shown that a combination of both methods is able to recover about 90-9 S% of the total error in a\(_{iso}\)· Furthermore, it was found that to obtain about 90% of the B\(_K\) correction only about I 0-20% ofthe configurations within H0 have to be corrected. KW - Organische Chemie Y1 - 1991 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58890 ER - TY - JOUR A1 - Christl, Manfred A1 - Brüntrup, Gisela T1 - Diimine Reduction and Ozonolysis of Benzvalene N2 - Via reduction of benzvalene (1) with diirnine tricyclo[3.1.0.02•6]hexane is obtained in good yield. The procedure renders 3, which has already been synthesized by Lemal and Shim, accessible much easier and in larger quantities. IH and 13C n.m.r. spectroscopic data are discussed. Both the thermal and the AgBF4-catalyzed rearrangernent of 3 yield 1,3-cyclohexadiene (8). - The ozonolysis of 1 with subsequent LiAIH4-reduction results in cis-I,3- bis(hydroxyrnethyl)cyclobutane (13a). N2 - Durch Reduktion von Benzvalen (1) mit Diimin wird das Tricyc1o[3.1.0.02•6]hexan (3) in guter Ausbeute erhalten. Das Verfahren macht das bereits von Lemal und Shim dargestellte 3 erheblich leichter und in größeren Mengen zugänglich. IH- und 13C-NMR-spektroskopische Daten werden diskutiert. Sowohl die thermische als auch die AgBF4-katalysierte Umlagerung von 3 führt zu 1,3-Cyclohexadien (8). - Die Ozonolyse von 1 mit anschließender LiAlH4-Reduktion ergibt das cis-l,3-Bis(hydroxymethyl)cyclobutan (13a). KW - Organische Chemie Y1 - 1974 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-57953 ER - TY - JOUR A1 - Suter, H. U. A1 - Pleß, V. A1 - Ernzerhof, M. A1 - Engels, Bernd T1 - Difficulties in the Calculation of Electron Spin Resonance Parameters using Density Functional Methods N2 - Density functional theory is applied to the calculation ofthe isotropic byperfine coupJing constants in some small molecules. Various functionals are tested. The agreement of the calculated values to experimental data and values obtained from sophisticated ab initio methods depends on the functionals used and the system under consideration. With respect to spin density calculations the functional of Lee, Yang and Parr with Becke's excbange functional (BLYP) is found to give good results for tbe heavier center of the CH and the NH molecule, while the spin densities of other molecules such as OH, H\(_2\)CN, H\(_2\)CO\(^+\), NO and O\(_2\) deviate considerably from experimental and/or other theoretical results (30%-60%). In cases where the singly occupied orbital can contribute to the isotropic hyperfine coupling constants, accurate results are obtained. The reason fortbis is analyzed. KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59113 ER - TY - JOUR A1 - Engels, Bernd T1 - Detailed study of the configuration selected multi-reference configuration interaction method combined with perturbation theory to correct the wave function N2 - A reliable prediction of the isotropic hyperfine coupling constant A\(_{iso}\) is still a difficult task for ab initio calculations. In previous studies, the configuration selected multireference configuration interaction method in combination with perturbation theory to correct the wave function (MRCI/ B\(_K\)) yielded accurate isotropic hyperfine coupling constants very economically. The present study gives a detailed analysis of the MRCI/ B\(_K\) method based on the X\(^2 \pi\) state of CH as a test case. Furthermore, a comparison to various other methods such as Maller-Ptesset perturbation theory and the coupled cluster approach is made. The success of the MRCI/ B\(_K\) method in predicting isotropic hyperfine coupling constants is explained in terms of the inßuence of higher than double excitations. KW - Organische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59019 ER - TY - JOUR A1 - Kim, E. A1 - Christl, Manfred A1 - Kochl, J. K. T1 - Charge-Transfer Cycloaddition of Homobenzvalene with Tetracyanoethylene N2 - The transient yellow color observed in the cycloaddition of homobenzvalene (HB) with tetracyanoethylene (TCNE) is associated with the charge-transfer complex [HB, TCNE). The deliberate photoexcitation of [HB,TCNE) affords a mixture of charge-transfer cycloadducts (1, 2, and 3) that differs from that obtained in thermal cycloaddition. The relationship of {HB t TCNE•) radical-ion pair (as the critical reactive intermediate in charge-transfer cycloaddition) to the activation process for thermal cycloaddition is discussed. KW - Organische Chemie KW - Electron transfer KW - photochemical KW - Radical-ion pair KW - Photochemistry Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58537 ER - TY - JOUR A1 - Engels, Bernd A1 - Peyerimhoff, S.D. A1 - Davidson, E.R. T1 - Calculation of hyperfine coupling constants : An ab initio MRD-CI study for nitrogen to analyse the effects of the basis sets and CI parameter N2 - The hyperfine coupling constant for the nitrogen atom is evaluated by large-scale MRD-CI calculations. A detailed analysis of the charge density at the nucleus and the spin polarization in the ls and 2s shell as a function of various technical parameters is undertaken. Various (s, p) AO basis sets and the inftuence of correlation orbitals is investigated as weil as selection threshold and other properlies in CI calculations. The best value, obtained for the isotropic hyperfine coupling constant in an s, p, d basis, based on theoretical judgment of' best' quantities, is 9·9 MHz compared to 10·4509 MHz. KW - Organische Chemie Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-58784 ER - TY - THES A1 - Peethambaran Nair Syamala, Pradeep T1 - Bolaamphiphilic Rylene Bisimides: Thermodynamics of Self-assembly and Stimuli-responsive Properties in Water T1 - Bolaamphiphile Rylenebisimide: Thermodynamik der Selbstorganisation und Stimuli-responsiven Merkmale in Wasser N2 - The present thesis demonstrates how different thermodynamic aspects of self-assembly and stimuli-responsive properties in water can be encoded on the structure of π-amphiphiles, consisting of perylene or naphthalene bisimide cores. Initially, quantitative thermodynamic insights into the entropically-driven self-assembly was studied for a series of naphthalene bisimides with UV/Vis and ITC measurements, which demonstrated that their thermodynamic profile of aggregation is heavily influenced by the OEG side chains. Subsequently, a control over the bifurcated thermal response of entropically driven and commonly observed enthalpically driven self-assembly was achieved by the modulation of glycol chain orientation. Finally, Lower Critical Solution Temperature (LCST) phenomenon observed for these dyes was investigated as a precise control of this behavior is quintessential for self-assembly studies as well as to generate ‘smart’ materials. It could be shown that the onset of phase separation for these molecules can be encoded in their imide substituents, and they are primarily determined by the supramolecular packing, rather than the hydrophobicity of individual monomers. N2 - Die vorliegende Arbeit zeigt, wie verschiedene thermodynamische Aspekte der Selbstorganisation sowie die Stimuli-responsiven Merkmale in Wasser mittels der Struktur von π-Amphiphilen mit Perylen- oder Naphthalinbisimidkernen programmiert werden können. Zunächst wurden quantitative thermodynamische Einblicke in die entropisch getriebene Selbstorganisation für eine Reihe von Naphthalinbisimiden mit UV / Vis- und ITC-Messungen untersucht. Diese zeigten, dass ihr thermodynamisches Aggregationsprofil stark von den Oligoethylenglykol-Seitenketten beeinflusst wird. Anschließend wurde durch gezielte Modulation der Glykolketten und der daraus resultierenden Neuorientierung der Ketten, eine Kontrolle über die Thermodynamik der Selbstassemblierung zwischen der häufiger beobachtbaren enthalpisch getriebenen und der entropisch getriebenen Selbstorganisation erreicht. Schließlich wurde das für diese Farbstoffe beobachtete Phänomen der niedrigeren kritischen Lösungstemperatur (LCST) untersucht, da eine genaue Kontrolle dieses Verhaltens für Selbstorganisationsstudien sowie für die Erzeugung „intelligenter“ Materialien von entscheidender Bedeutung ist. Es konnte gezeigt werden, dass der Beginn der Phasentrennung für diese Moleküle von ihren Imidsubstituenten und hauptsächlich durch die supramolekulare Packung bestimmt werden und nicht durch die Hydrophobie einzelner Monomere. KW - Supramolekulare Chemie KW - Aggregation KW - Selbstorganisation KW - Wasser KW - Supramolecular Chemistry KW - Thermodynamics KW - Self-assembly KW - Lower Critical Solution Temperature (LCST) KW - Water KW - Organische Chemie Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-213424 ER -