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 - THES A1 - Budiman, Yudha Prawira T1 - Applications of Fluorinated Aryl Boronates in Organic Synthesis T1 - Die Anwendungen von fluorinierten Arylboronaten in der organischen Synthese N2 - Fluorinated compounds are an important motif, particularly in pharmaceuticals, as one-third of the top performing drugs have fluorine in their structures. Fluorinated biaryls also have numerous applications in areas such as material science, agriculture, crystal engineering, supramolecular chemistry, etc. Thus, the development of new synthetic routes to fluorinated chemical compounds is an important area of current research. One promising method is the borylation of suitable precursors to generate fluorinated aryl boronates as versatile building blocks for organic synthesis. Chapter 1 In this chapter, the latest developments in the synthesis, stability issues, and applications of fluorinated aryl boronates in organic synthesis are reviewed. The catalytic synthesis of fluorinated aryl boronates using different methods, such as C–H, C–F, and C–X (X = Cl, Br, I, OTf) borylations are discussed. Further studies covering instability issues of the fluorinated boronate derivatives, which are accelerated by ortho-fluorine, have been reported, and the applications of these substrates, therefore, need special treatment. Numerous groups have reported methods to employ highly fluorinated aryl boronates that anticipate the protodeboronation issue; thus, polyfluorinated aryl boronates, especially those containing ortho-fluorine substituents, can be converted into chloride, bromide, iodide, phenol, carboxylic acid, nitro, cyano, methyl esters, and aldehyde analogues. These substrates can be applied in many cross-coupling reactions, such as the Suzuki-Miyaura reaction with aryl halides, the Chan-Evans-Lam C–N reaction with aryl amines or nitrosoarenes, C–C(O) reactions with N-(aryl-carbonyloxy)phthalamides or thiol esters (Liebskind-Srogl cross-coupling), and oxidative coupling reactions with terminal alkynes. Furthermore, the difficult reductive elimination from the highly stable complex [PdL2(2,6-C6F2+nH3-n)2] was the next challenge to be targeted in the homocoupling of 2,6-di-fluoro aryl pinacol boronates, and it has been solved by conducting the reaction in arene solvents that reduce the energy barrier in this step as long as no coordinating solvent or ancillary ligand is employed. Chapter 2 In this chapter, phenanthroline-ligated copper complexes proved to be efficient catalysts for the Suzuki-Miyaura cross-coupling of highly fluorinated aryl boronate esters (ArF–Bpin) with aryl iodides or bromides. This newly developed method is an attractive alternative to the traditional methods as copper is an Earth-abundant metal, less toxic, and cheaper compared to the traditional methods which commonly required palladium catalysts, and silver oxide that is also often required in stoichiometric amounts. A combination of 10 mol% copper iodide and 10 mol% phenanthroline, with CsF as a base, in DMF, at 130 ˚C, for 18 hours is efficient to cross-couple fluorinated aryl pinacol boronates with aryl iodides to generate cross-coupled products in good to excellent yields. This method is also viable for polyfluorophenyl borate salts such as pentafluorophenyl-BF3K. Notably, employing aryl bromides instead of aryl iodides for the coupling with fluorinated aryl–Bpin compounds is also possible; however, increased amounts of CuI/phenanthroline catalyst is necessary, in a mixture of DMF and toluene (1:1). A diverse range of π···π stacking interactions is observed in the cross-coupling products partly perfluorinated biaryl crystals. They range from arene–perfluoroarene interactions (2-(perfluorophenyl)naphthalene and 2,3,4-trifluorobiphenyl) to arene–arene (9-perfluorophenyl)anthracene) and perfluoroarene–perfluoroarene (2,3,4,5,6-pentafluoro-2’methylbiphenyl) interactions. Chapter 3 In this chapter, the efficient Pd-catalyzed homocoupling reaction of aryl pinacol pinacol boronates (ArF–Bpin) that contain two ortho-fluorines is presented. The reaction must be conducted in a “noncoordinating” solvent such as toluene, benzene, or m-xylene and, notably, stronger coordinating solvents or ancillary ligands have to be avoided. Thus, the Pd center becomes more electron deficient and the reductive elimination becomes more favorable. The Pd-catalyzed homocoupling reaction of di-ortho-fluorinated aryl boronate derivatives is difficult in strongly coordinating solvents or in the presence of strong ancillary ligands, as the reaction stops at the [PdL2(2,6-C6F2+nH3-n)2] stage after the transmetalations without the reductive elimination taking place. It is known that the rate of reductive elimination of Ar–Ar from [ML2(Ar)(Ar)] complexes containing group-10 metals decreases in the order Arrich–Arpoor > Arrich–Arrich > Arpoor–Arpoor. Furthermore, reductive elimination of the most electron-poor diaryls, such as C6F5–C6F5, from [PdL2(C6F5)2] complexes is difficult and has been a challenge for 50 years, due to their high stability as the Pd–Caryl bond is strong. Thus, the Pd-catalyzed homocoupling of perfluoro phenyl boronates is found to be rather difficult.   Further investigation showed that stoichiometric reactions of C6F5Bpin, 2,4,6-trifluorophenyl–Bpin, or 2,6-difluorophenyl–Bpin with palladium acetate in MeCN stops at the double transmetalation step, as demonstrated by the isolation of cis-[Pd(MeCN)2(C6F5)2], cis-[Pd(MeCN)2(2,4,6-C6F3H2)2], and cis-[Pd(MeCN)2(2,6-C6F2H3)2] in quantitative yields. Thus, it can be concluded that the reductive elimination from diaryl-palladium complexes containing two ortho-fluorines in both aryl rings, is difficult even in a weakly coordinating solvent such as MeCN. Therefore, even less coordinating solvents are needed to make the Pd center more electron deficient. Reactions using “noncoordinating” arene solvents such as toluene, benzene, or m-xylene were conducted and found to be effective for the catalytic homocoupling of 2,6-C6F2+nH3-nBpin. The scope of the reactions was expanded. Using toluene as the solvent, the palladium-catalyzed homocoupling of ArF–Bpin derivatives containing one, two or no ortho-fluorines gave the coupled products in excellent yields without any difficulties. DFT calculations at the B3LYP-D3/def2-TZVP/6-311+g(2d,p)/IEFPCM // B3LYP-D3/SDD/6-31g**/IEFPCM level of theory predicted an exergonic process and lower barrier (< 21 kcal/mol) for the reductive elimination of Pd(C6F5)2 complexes bearing arene ligands, compared to stronger coordinating solvents (acetonitrile, THF, SMe2, and PMe3), which have high barriers ( > 33.7 kcal/mol). Reductive elimination from [Pd(ηn-Ar)(C6F5)2] complexes have low barriers due to: (i) ring slippage of the arene ligand as a hapticity change from η6 in the reactant to ηn (n ≤ 3) in the transition state and the product, which led to less σ-repulsion; and (ii) more favorable π-back-bonding from Pd(ArF)2 to the arene fragment in the transition state. Chapter 4 In this chapter, the efficient Pd-catalyzed C–Cl borylation of aryl chlorides containing two ortho-fluorines is presented. The reactions are conducted under base-free conditions to prevent the decomposition of the di-ortho-fluorinated aryl boronates, which are unstable in the presence of base. A combination of Pd(dba)2 (dba = dibenzylideneacetone) with SPhos (2-dicyclohexylphosphino-2′,6′-dimethoxybiphenyl) as a ligand is efficient to catalyze the C–Cl borylation of aryl chlorides containing two ortho-fluorine substituents without base, and the products were isolated in excellent yields. The substrate scope can be expanded to aryl chloride containing one or no ortho-fluorines and the borylated products were isolated in good to very good yield. This method provides a nice alternative to traditional methodologies using lithium or Grignard reagents. N2 - Fluorierte Verbindungen sind insbesondere in der Pharmazie wichtige Bausteine, da ein Drittel der wirksamen Medikamente Fluorsubstituenten beinhalten. Fluorierte Biaryle haben auch zahlreiche Anwendungen in Bereichen wie der Materialwissenschaft, der Landwirtschaft, dem Design molekularer Festkörperstrukturen, der supramolekularen Chemie etc. Daher ist die Entwicklung neuer synthetischer Wege zu fluorierten chemischen Verbindungen sehr gefragt. Eine der vielversprechenden Methoden ist die Borylierung geeigneter Vorstufen zur Erzeugung fluorierter Arylboronate, die als vielseitige Bausteine für die organische Synthese dienen können. ... KW - Chemistry KW - Homogeneous Catalysis KW - borylation KW - boronates KW - fluorine KW - C-C coupling KW - Homogene Katalyse KW - Borylierung KW - Fluorierung Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217579 ER - TY - THES A1 - Seifert, Sabine T1 - New Electron-Deficient Polycyclic Aromatic Dicarboximides by Palladium-Catalyzed C–C Coupling and Core Halogenation–Cyanation T1 - Neue elektronenarme polyzyklische aromatische Dicarboximide durch Palladium-katalysierte C–C-Kupplung und Kernhalogenierung–Cyanierung N2 - The thesis describes the development of new synthetic strategies towards planar nanometer-sized and electron-deficient polycyclic aromatic dicarboximides, which are rather unexplored compared with the large variety of electron-rich polycyclic aromatic hydrocarbons and nanographenes. Thus, new polycyclic aromatic systems containing a different number of dicarboximide groups were designed since this class of compounds has revealed its significance in the past due to a range of desirable molecular properties and its high thermal and photochemical stability. The synthetic concept towards these systems includes different C–C coupling techniques that were combined within coupling cascade reactions. Therefore, this thesis provides new insights into the reactivity of aromatic substrates and elucidates mechanistic aspects of C–C coupling cascade reactions to facilitate the precise design of new and desirable materials based on polycyclic aromatic dicarboximides. Furthermore, structure-property relationships as well as the optical and electrochemical properties were investigated by UV/Vis absorption and fluorescence spectroscopy and cyclic or square wave voltammetry. Insights into the molecular structures in the solid state were obtained by single-crystal X-ray analysis. In subsequent studies, highly electron-deficient perylene bisimides and their reduced species have been investigated in detail. Thus, core-functionalized perylene bisimides were synthesized and UV/Vis absorption spectroscopy, spectroelectrochemistry and cyclic or square wave voltammetry were used to determine their optical properties and the stability of the individual reduced species. N2 - Die vorliegende Arbeit beschreibt die Entwicklung neuer Synthesestrategien für planare und elektronenarme polyzyklische aromatische Dicarboximide in der Größenskala weniger Nanometer, welche im Vergleich zu der Vielzahl an elektronenreichen polyzyklischen aromatischen Kohlenwasserstoffen und Nanographenen weitaus weniger erforscht sind. Daher wurden neue polyzyklische aromatische Systeme entworfen, welche eine unterschiedliche Anzahl von Dicarboximid-Einheiten enthalten, da diese Klasse von Verbindungen ihre Bedeutsamkeit in der Vergangenheit aufgrund einer Reihe vorteilhafter molekularer Eigenschaften und ihrer hohen thermischen und photochemischen Stabilität gezeigt hat. Das synthetische Konzept für diese Systeme umfasst dabei verschiedene C–C-Knüpfungstechniken, die zu Kaskadenreaktionen kombiniert wurden. Daher werden in dieser Arbeit neue Einblicke in die Reaktivität von aromatischen Substraten aufgezeigt und mechanistische Aspekte von C–C-Kupplungskaskadenreaktionen erläutert, um eine präzise Gestaltung neuer und erstrebenswerter Materialien auf der Basis von polyzyklischen aromatischen Dicarboximiden zu erleichtern. Darüber hinaus wurden Struktur-Eigenschafts-Beziehungen sowie die optischen und elektrochemischen Eigenschaften durch UV/Vis-Absorptions- und Fluoreszenzspektroskopie sowie Cyclo- oder Square Wave Voltammetrie untersucht. Einblicke in die molekularen Strukturen im Festkörper wurden durch Einkristallstrukturanalyse erhalten. In nachfolgenden Studien wurden stark elektronenarme Perylenbisimide und ihre reduzierten Spezies detailliert untersucht. Dazu wurden kernfunktionalisierte Perylenbisimide synthetisiert. Um deren optische Eigenschaften und die Stabilität der reduzierten Spezies zu bestimmen wurden UV/Vis-Absorptionsspektroskopie, Spektroelektrochemie und Cyclo- oder Square Wave Voltammetrie verwendet. KW - Kupplungsreaktion KW - Dicarboximide KW - Polycyclische Aromaten KW - C-C coupling KW - Dicarboximides KW - Polycyclic aromatic hydrocarbons Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-156200 ER -