Dissertations / Theses on the topic 'Spektroelektrochemie'
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Tarabek, Jan. "Elektropolymerisation, Spektroelektrochemie und Potentiometrie von funktionalisierten leitfähigen Polymeren." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2004. http://nbn-resolving.de/urn:nbn:de:swb:14-1103635385062-58674.
Full textRühl, Nicolas [Verfasser], Tobias [Gutachter] Hertel, Ingo [Gutachter] Fischer, and Christoph [Gutachter] Lambert. "Spektroelektrochemie an einzelnen (6,5)-Kohlenstoffnanoröhren / Nicolas Rühl. Gutachter: Tobias Hertel ; Ingo Fischer ; Christoph Lambert." Würzburg : Universität Würzburg, 2015. http://d-nb.info/1108781519/34.
Full textAli, Shah Anwar-ul-Haq. "Electrochemical Synthesis and Spectroelectrochemical Characterization of Conducting Copolymers of Aniline and o-Aminophenol." Doctoral thesis, Universitätsbibliothek Chemnitz, 2007. http://nbn-resolving.de/urn:nbn:de:swb:ch1-200700702.
Full textPfaff, Ulrike, Grzegorz Filipczyk, Alexander Hildebrandt, Marcus Korb, and Heinrich Lang. "1,3,5-Triferrocenyl-2,4,6-tris(ethynylferrocenyl)-benzene – a new member of the family of multiferrocenyl-functionalized cyclic systems." Universitätsbibliothek Chemnitz, 2014. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-152459.
Full textDieser Beitrag ist aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich
Holze, Rudolf. "The adsorption of thiophenol on gold - a spectroelectrochemical study." Universitätsbibliothek Chemnitz, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-198201.
Full textDieser Beitrag ist aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich
Miesel, Dominique. "Beeinflussung der Metall-Metall-Interaktionen in Ferrocenyl-funktionalisierten Phospholen." Doctoral thesis, Universitätsbibliothek Chemnitz, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-198963.
Full textPoppe, Jan. "Spectroelectrochemical Investigations of Semiconductor Nanoparticles." Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-162122.
Full textShreepathi, Subrahmanya. "Dodecylbenzenesulfonic Acid: A Surfactant and Dopant for the Synthesis of Processable Polyaniline and its Copolymers." Doctoral thesis, Universitätsbibliothek Chemnitz, 2006. http://nbn-resolving.de/urn:nbn:de:swb:ch1-200602029.
Full textChandra, Sudeshna, Christian Gäbler, Christian Schliebe, Heinrich Lang, and Dhirendra Bahadur. "Fabrication of a label-free electrochemical immunosensor using a redox active ferrocenyl dendrimer." Universitätsbibliothek Chemnitz, 2017. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-220086.
Full textDieser Beitrag ist aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich
Speck, J. Matthäus. "Ferrocenyl-substituted Thiophenes – Electrochemical Behavior and Charge Transfer." Doctoral thesis, Universitätsbibliothek Chemnitz, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-208811.
Full textAlakhras, Fadi. "Spectroelectrochemistry of Intrinsically Conducting Furan-Thiophenes Copolymers." Doctoral thesis, Universitätsbibliothek Chemnitz, 2008. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-200801350.
Full textElectrochemical copolymerization of furan and thiophene or 3-chlorothiophene was successfully realized in a solvent system consisting of boron trifluoride ethyl ether (BFEE) + ethyl ether (EE) (ratio 1:2) at constant electrode potential. The addition of trifluoroacetic acid (TFA) (10 % by volume) to BFEE + EE (ratio 1:2) decreased the oxidation potential of the monomers; the polymerization rate was also accelerated because TFA increases the ionic conductivity of the electrolyte. The homopolymers have only one redox peak caused by polymer oxidation and reduction. Electrochemical copolymerization both at different potentials and with different thiophene or 3-chlorothiophene concentrations is investigated. The copolymers show one anodic/cathodic peak couple that appears at a position quite different from the positions observed with homopolymers. More thiophene or 3-chlorothiophene units are incorporated into the copolymer film with an increasing polymerization potential of the copolymer and/or with an increasing concentration of thiophene or 3- chlorothiophene in the feed. An electropolymerization mechanism of copolymers has been proposed, and the copolymers show a fairly good long-term stability of the redox activity after cycling in acetonitrile. In situ UV-Vis spectra of the homo- and copolymer films were measured and λ1max which corresponds to the π → π* transition is determined. The optical transition with λ2max from the valence band into the higher bipolaron band is also assigned. The band gap (Eg) for homo- and copolymer films from a direct interband transition is estimated from the absorption edge of the spectrum. The redox thermodynamics of the homo- and copolymer films suggest that one electron is removed from polymer segments containing four monomer units. The studied conducting films show a single conductivity change with a stable conductivity up to EAg/AgCl= 2 V. The conductivity of these films is almost restored when the potential shift direction is reversed. Polyfuran compared to polythiophene, has a lower conductivity and the conductivity of poly(3-chlorothiophene) is around one order of magnitude lower than that of polythiophene. The in situ conductivity properties of the copolymers are not the sum of those of the individual homopolymers. This result may eliminate the possibility that the copolymers can be considered as block copolymers. Vibrational spectra of homo- and copolymer films investigated in this study have been obtained using FTIR spectroscopy. The results indicate that α-α' coupling of radical cations has taken place in the copolymerization. This is a characteristic of α-substituted five-membered heterocyclic compounds. The electrochemical degradation mechanism of furan-thiophene copolymers is also described using the obtained spectra. The in situ resonance Raman spectroscopy of the copolymers shows spectroscopic properties intermediate between those of homopolymers. At higher polymerization potentials and at higher concentrations of thiophene or 3-chlorothiophene in the feed more thiophene or 3-chlorothiophene units are incorporated into the copolymer chains. It is obvious that the Raman spectra of the copolymers are more complex than those of homopolymers, which makes the assignment difficult. However, the in situ Raman spectra of the copolymers are reminiscent of those of the homopolymers. The spectroelectrochemical properties of the copolymers confirmed that the copolymers show intermediate characteristics between the homopolymers, implying that oxidation of monomers is possible and the copolymer chains may accordingly be composed of furan and thiophene or 3-chlorothiophene units
Frasca, Stefano. "Biocatalysis on nanostructured surfaces : investigation and application of redox proteins using spectro-electrochemical methods." Phd thesis, Universität Potsdam, 2012. http://opus.kobv.de/ubp/volltexte/2012/5813/.
Full textIn dieser Arbeit werden verschiedenen Aspekte im Forschungsfeld der Protein-Spekro- und Elektro-Chemie an nanostrukturierte Materialien behandelt. Zum einen werden in dieser Arbeit nanostrukturierte, transparente und leitfähige Metalloxide als Basis für die Immobilisierung von elektroaktiven Enzym untersucht. Des Weiteren behandelt diese Arbeit die Immobilisierung von humaner Sulfitoxidase auf einer Gold-Nanopartikel-modifizierten Elektrode. Schließlich wird die direkte und die vermittelte Elektrochemie von Xanthindehydrogenase aus Rhodobacter capsulatus und Aldehydoxidase Homolog 1, aus Mause, vorgestellt. Im ersten Teil der Arbeit wird über die stabile Immobilisierung und reversible Elektrochemie von Cytochrom c in einem transparenten und leitfähigen Zinn-dotierten und Zinn-reichen Indiumoxid Film mit einer gut definierten Mesoporosität berichtet. Die Transparenz und gute Leitfähigkeit in Kombination mit der großen Oberfläche dieser Materialien erlauben die Inkorporation einer große Menge elektroaktiver Biomoleküle (zwischen 250 und 2500 pmol cm-2) und deren elektrochemische und spektroskopische Untersuchung. Das elektrochemische Verhalten und die Proteinimmobilisierung sind durch die geometrischen Parameter des porösen Materials, wie die Struktur und Porenform, die Oberflächenchemie, sowie die Größe und Ladung des Proteins beeinflusst. UV-Vis und Resonanz-Raman-Spektroskopie in Kombination mit direkter Protein-Voltammetrie werden für die Charakterisierung von Cytochrom c eingesetzt und zeigen keine Störung der strukturellen Integrität des Redox-Proteins durch die Immobilisierung. Eine langfristige Immobilisierung des Proteins von mehr als zwei Wochen auch bei hoher Ionenstärke wurde unter Verwendung dieser unmodifizierten mesoporösen Indiumoxid-basierten Materialien erreicht. Das Potential dieses modifizierten Materials für die Verwendung in einem amperometrischen Biosensor zum Nachweis von Superoxid-Anionen wurde aufgezeigt. Es wurde eine Empfindlichkeit von etwa 100 A M-1 m-2, in einem linearen Messbereich der Superoxidkonzentration zwischen 0,13 und 0,67 µM, erreicht. Außerdem wurde ein elektrochemisch umschaltbares Protein-basiertes optisches Gerät konzipiert mit Cytochrom c und der mesoporösen Indiumzinnoxidschicht. Ein redox-sensitiver Farbstoff wurde als schaltbare Komponente des Systems verwendet. Die Cytochrom c Oxidation des Farbstoffs durch Wasserstoffperoxid wurde spektroskopisch untersucht. Der Redox-Zustand des Farbstoffs, co-immobilisiert mit dem Protein, ist leicht durch das Anlegen eines elektrischen Potentials an das Trägermaterial kontrollierbar. Dadurch wird die elektrochemische Zurücksetzung des Systems auf den Anfangszustand und eine repetitive Signalerzeugung ermöglicht. Für negativ geladene Proteine, die keine gute Interaktion mit dem negativ geladenen Indiumoxid-basierten Film zeigen wurden die Modifikation der Indiumzinnoxidschicht mit einem positiv geladenen Polymer sowie die Verwendung eines Antimon-dotierten Zinnoxid Films vorgeschlagen. Dadurch konnte die Abstoßung induziert durch die ähnliche Ladung des Proteins und der Elektrode überwunden werden. Es gelang für die humane Sulfit-Oxidase und die separate Häm-haltige Domäne der Austausch von Elektronen mit dem Trägermaterial. Im zweiten Teil der Arbeit wird über eine neue Methode für die Biosensorik von Sulfit berichtet, bei der direkte Elektronentransfer von humaner Sulfitoxidase immobilisierten auf einer mit Gold-Nanopartikeln modifizierten Elektrode verstärkt wurde. Die sphärischen Gold-Nanopartikeln, von etwa 10 nm im Durchmesser, wurden über eine neue Methode durch Reduktion von HAuCl4 mit verzweigtem Polyethylenimin in einer ionischen Flüssigkeit synthetisiert. Diese Nanopartikel wurden kovalent an eine mit Mercaptoundecansäure modifizierten Gold-Elektrode immobilisiert und dienen als Basis für die Adsorption von Sulfitoxidase adsorbiert wurde. Dadurch wurde ein schneller heterogener Elektronen-Transfer und verbesserte Elektrokatalyse erreicht. Für die Charakterisierung des verwendeten Systems eingesetzt wurden UV-Vis und Resonanz-Raman-Spektroskopie in Kombination mit direkter Protein-Voltammetrie. Es wurde keine Störung der strukturellen Integrität des Redox-Proteins beobachtet. Der vorgeschlagene Biosensor zeigte eine schnelle steady-state Stromantwort innerhalb von 2 s, eine lineare Detektion im Bereich zwischen 0,5 und 5,4 µM Sulfit mit einer hohen Empfindlichkeit (1,85 nA µM-1). Das untersuchte System bietet bemerkenswerte Vorteile da es ermöglicht bei niedriger angelegter Spannung und bei sehr hoher Ionenstärke zu arbeiten. Aufgrund dieser Eigenschaften hat das vorgeschlagene System großes Potential für die Entwicklung von bioelektronischen Geräten und der Anwendung in realen Proben. Schließlich werden im letzten Teil der Arbeit die komplexeren Enzymen Xanthindehydrogenase aus Rhodobacter capsulatus und Maus Aldehydoxidase Homolog 1 spektro- und elektrochemisch untersucht. Es konnte gezeigt werden, dass verschiedene Kofaktoren in der Proteinstruktur, wie FAD und der Molybdän Kofaktor direkt Elektronen mit einer Elektrode austauschen können, was durch einzelne Peaks im Square Wave Voltammogramm angezeigt wird. Es konnte eine zusätzliche redoxaktive Gruppe mit direktem Elektronen-Transfer nach Austausch eines Cysteins durch Serin am exponierten Eisen-Schwefel-Cluster gezeigt werden. Außerdem wurde eine vermittelte spektroelektrochemische Titration des FAD-Kofaktors in Anwesenheit von Mediatoren der Klasse der Eisen und Kobalt-Komplexe durchgeführt. Die Ergebnisse zeigen, dass FAD in R. capsulatus XDH zu einem stabilen Semichinone reduziert werden kann. Es gelang die formalen Potentiale für die zwei einzigen Elektrontransferprozesse zu bestimmen.
Stelter, Michael. "Elektrokatalytische Sauerstoffreduktion an übergangsmetallporphyrinmodifizierten Graphitelektroden." Doctoral thesis, Universitätsbibliothek Chemnitz, 2001. http://nbn-resolving.de/urn:nbn:de:swb:ch1-200100652.
Full textJbarah, Abdel Aziz. "Spectroelectrochemistry of Substituted Anilines." Doctoral thesis, Universitätsbibliothek Chemnitz, 2006. http://nbn-resolving.de/urn:nbn:de:swb:ch1-200601985.
Full textThe electrochemistry and spectroelectrochemistry of nitroanilines (ortho, meta, and para isomers) and their respective amino compounds (ortho-, meta- and paraphenylenediamines) have been investigated at two different electrodes (platinum and gold) and in two different electrolyte solutions (acidic and neutral perchlorate). The results of these investigations were used as a reference for the spectroelectrochemistry of polyvinylamines containing o- or p-nitroaniline substituents. Spectroelectrochemical investigations of polyvinylamine containing Wurster radical cation or stilbene as a substituent were also carried out. The oxidative and reductive electrochemistry of the three isomeric nitroanilines has been studied in neutral (0.1 M KClO4) and acidic (0.1 M HClO4) aqueous electrolyte solutions with cyclic voltammetry and Surface Enhanced Raman Spectroscopy (SERS). The cyclic voltammograms recorded with a gold electrode in acidic electrolyte solution showed formation of o- and p-phenylenediamine in the negative going potential scan for o- and pnitroaniline respectively. In neutral electrolyte solution the situation is different and the final products of electrochemical reduction of these isomers are o- and p-amino-Nphenylhydroxylamine. The order of increasing electrochemical oxidation potential is mnitroaniline > p-nitroaniline > o-nitroaniline as observed from cyclic voltammograms recorded with a gold and platinum electrodes and in the positive going potentials scan for these isomers in acidic and neutral electrolyte solutions. An oxygen-gold adsorbate stretching mode was detected between 400 to 430 cm-1 in SER-spectra of the three isomeric nitroanilines in both electrolyte solutions at positive electrode potentials. The SERS experiments showed also a perpendicular orientation of adsorbed nitroanilines on a gold electrode with respect to the metal surface. General trends are observed in the anodic scans of isomeric phenylenediamines at both electrodes and in both electrolyte solutions. The one-electron electrochemical oxidation product (radical cation) in case of o- and m-phenylenediamine go into fast C-N coupling between radicals to form dimers (the first step of electropolymerization). The pphenylenediamine is oxidized according to an ECE mechanism (E = electron transfer reaction, C = chemical reaction), which involved two charge transfer steps coupled with acidbase reactions to form diimine. As we deduced from SERS measurements, m- and p-phenylenediamine adsorbed in flat orientation with respect to the metal surface via benzene ring and nitrogen atoms, respectively. o-Phenylenediamine adsorption is taking place via nitrogen atoms and with tilted orientation with respect to the metal surface. The cyclic voltammograms recorded with a gold electrode in acidic and neutral electrolyte solutions of polyvinylamines containing o- or p-nitroaniline substituents exhibit the same features like nitroaniline monomers in the negative going potentials scan. The result observed in the anodic scan for these polymers are different from those observed for monomers. Adsorption site and strength of the polyvinylamine polymer varies according to the applied electrode potential, percentage and type of the aromatic substituent at the polymer backbone, and the pH of the medium
Bilal, Salma. "Electrochemical Synthesis and Spectroelectrochemical Characterization of Novel Conducting Poly(o-phenylenediamine-co-o-/m-toluidine)." Doctoral thesis, Universitätsbibliothek Chemnitz, 2007. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-200701705.
Full textIn recent years the demand for advanced organic materials has sparked the search for new materials with tailored properties for possible technological applications. In the present study an attempt has been made to synthesize new organic conducting materials by exploring the possibility of the copolymerisation of o-phenylenediamine (OPD) with o-toluidine (OT) and m-toluidine (MT) in aqueous sulfuric acid. Cyclic voltammetry was used both for the electrochemical synthesis and characterization of the homopolymers and copolymers on a gold electrode. The copolymers were synthesized from mixed solutions of the monomers having different concentrations of OPD and a constant concentration of OT or MT. The voltammograms exhibited different behavior for different concentrations of OPD in the feed. Mixing of the monomer solutions with appropriate concentrations resulted in a copolymer that shows an extended useful potential range of the redox activity relative to the corresponding homopolymers. The homopolymers poly(o-toluidine) (POT) and poly(m-toluidine) (PMT) show similar electrochemical properties. However, differences were observed in the properties between the copolymers of OT and MT with OPD that could be due to the variation in the monomer units and orientation along the copolymer chains. The copolymerization of OPD seems to be more facilitated if instead of MT, OT is present as one of the comonomers. The effect of scan rate and pH on the electrochemical activity was studied. The copolymers were surface confined, electroactive and showed good electrochemical activity even at pH 8.0 and pH 9.0 in case of poly(OPD-co-MT) and poly(OPD-co-OT), respectively. In situ conductivity measurements further suggest the formation of new material (copolymer) because the copolymers have electrode potential regions for maximum conductivity completely different from those of the homopolymers. The conductivity values of the copolymers were between the conductivities of the homopolymers. In situ UV-Vis spectroelectrochemical studies of the copolymerization of OPD with OT and MT at constant potential polymerization on indium tin oxide (ITO) coated glass electrodes reveal that head to tail coupled p-aminodiphenylamine (PPD) type of mixed dimers/oligomers, presumably resulting from the dimerization of OPD and OT or MT cation radicals, are predominantly formed during the initial stages of the electropolymerization of the mixed solutions. An absorption peak at λ = 497 nm in the UV-Vis spectra was assigned to these intermediates. Characteristic UV-Vis and Raman (λex = 647.1 nm) fea-tures of the copolymers synthesized with different feed concentrations on ITO coated glass and gold electrodes, respectively, have been identified and their dependencies on the electrode potential are discussed. Spectroelectrochemical results reveal that the copolymer backbone probably consist of a mixture of copolymer chains with different monomer contents and has significant number of block segments. The properties of the copolymers were found to be very sensitive to the OPD feed concentration and clear variations in the electrochemical and spectroelectrochemical properties of the materials from mixed solutions can be observed just by varying the concentration of OPD in the feed. FT-IR spectral analysis of the copolymers suggests the presence of both OPD and OT or MT units and thus formation of copolymer during the electrolysis of mixed solutions of OPD and OT or MT. The phenazine type cyclic structures increase in the copolymer with increasing OPD concentration in the feed
Al, Khalyfeh Khaled. "Ferrocene-Based Monomers, Oligomers and Polymers as Electro-Active Materials." Doctoral thesis, Universitätsbibliothek Chemnitz, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-216647.
Full textDie vorliegende Doktorarbeit beschäftigt sich mit Synthese und Charakterisierung von funktionalisierten Ferrocenen mit bis zu vier Aldehyd- und Vinylgruppen und ihrer Verwendung als Monomere für neuartige ferrocenbasierte Oligomere mit konjugiertem Rückgrat unter ADMET (acyclic diene metathesis) und HWE- (Horner-Wadsworth-Emmons) Reaktionsbedingungen. Zusätzlich wurden ferrocenhaltige Polymere mit einem aliphatischen Rückgrat durch Polymerisation mit und ohne Lösemittel hergestellt und ihr elektrochemisches Verhalten untersucht. Das Hauptaugenmerk dieser Arbeit liegt in der Optimierung der elektrochemischen Eigenschaften der ferrocenbasierten Materialien (Oligomere oder Polymere) durch Variation des Polymerrückgrats, welche zahlreiche funktionelle Gruppen für die vernetzte Polymerisation und die Co-Polymerisation liefert. Durch diesen Prozess wird das molekulare Gewicht erhöht. Zusätzlich wird die Verwendung als elektroaktive Materialien insbesondere für die Energiespeichertechnik diskutiert. Durch lösungsmittelfreie Reaktionsbedingungen wurden ein hoher Monomerumsatz, relativ hohe molare Massen und zugleich längere Polymerketten erzielt. Elektrochemische Messungen (CV) zeigten, dass Ferrocenmoleküle mit mehr als zwei Formylgruppen die Elektronendichte an der Ferrocenyleinheit verringern und bei Oxidation leicht zersetzt werden. Erniedrigung der Messtemperatur und die Verwendung des nur schwach koordinierenden Leitsalzes [NnBu4][B(C6F5)4] führten zu aussagekräftigen Ergebnissen. Weiterhin konnte ein linearer Zusammenhang zwischen dem Redoxpotential und der Anzahl der Formyleinheiten aufgezeigt werden. Mutlizyklische Messungen bestätigten, dass das Ferrocen / Ferrocenium-Redoxpaar mindestens 100 Zyklen stabil ist. Mittels spektroelectrochemisches Messungen konnte gezeigt werden, dass konjungierte (oligomere) Verbindungen eine elektronische Wechselwirkung (IVCT) aufweisen, während aliphatische Rückgrade eine Wechselwirkung zwischen Ferrocen / Ferrocenium (polyvinylferrocenbasierte Materialien) verhindern und nur ein LMCT Übergang (Ligand zu Metall Charge-Transfer) beobachtet werden kann
Spittel, Daniel, Jan Poppe, Christian Meerbach, Christoph Ziegler, Stephen G. Hickey, and Alexander Eychmüller. "Absolute Energy Level Positions in CdSe Nanostructures from Potential-Modulated Absorption Spectroscopy (EMAS)." American Chemical Society, 2017. https://tud.qucosa.de/id/qucosa%3A33353.
Full textHassan, Nazly. "Spectroelectrochemistry of self-assembled monolayers of 2- and 4-mercaptopyridines." Doctoral thesis, Universitätsbibliothek Chemnitz, 2007. http://nbn-resolving.de/urn:nbn:de:swb:ch1-200701123.
Full textThe electrochemistry and spectroelectrochemistry of the self-assembled monolayers (SAMs) prepared of 2-mercaptopyridine (2MP) and 4-mercaptopyridine (4MP) dissolved either in water or 0.1 M H2SO4 have been investigated at polycrystalline gold electrodes in aqueous electrolyte solutions using cyclic voltammetry, electrochemical impedance measurements (EIM) and surface enhanced Raman spectroscopy (SERS). Electrochemical studies of 2MP and 4MP monolayers in aqueous acidic solution (0.5 M H2SO4) suggest that 2MP is adsorbed more strongly than 4MP due to the formation of S-Au-N chelate. However, the S-Au bond was found to be stronger in 4MP as compared with 2MP. The formation of the chelate in case of 2MP diminishes the probability of dimer formation. In the acidic solvent, the N-atom of 2MP molecule will be protonated leading to a weaker interaction of 2MP molecules with the substrate surface. The SERS results are in good agreement with the cyclic voltammetry results. The Au-S stretching band was obtained in the region from 215 to 245 cm-1 for 2MP deposited from water and acidic solvent and around 263 cm-1 for 4MP in both solvents. The SERS measurements showed also a perpendicular orientation of both 2MP and 4MP on the gold surface. In explaining the SERS results, the thione-thiol tautomerisations of the mercaptopyridines were also taken into consideration. The under- and overpotential deposition of copper on a polycrystalline gold electrode in aqueous 0.1 M sulfuric acid in the presence and in the absence of SAMs of 2- and 4-mercaptopyridine has been studied using cyclic voltammetry. In general, the presence of these SAMs has been found to inhibit the electrodeposition process of copper, suggesting very strong interactions between these adsorbates and the Au surface. 2MP shows a higher degree of inhibition, which is due to a stronger interaction probably due to the formation of the chelate structure. Studies have also been made of the influence of mercaptopyridines SAMs on the copper monolayer electrodeposited on the gold surface. The copper adlayer was found to be partially displaced by 2MP and 4MP monolayers. The rate of electron transfer for the Fe3+/2+ redox system on the gold electrode has been probed in the absence and presence of 2MP and 4MP monolayers by cyclic voltammetry and electrochemical impedance measurements (EIM). The charge transfer process was suggested to occur through the defects (pinholes) in the monolayer. In case of aqueous solvent 4MP decreases the electron transfer reaction stronger than 2MP. Since the packing density for 4MP is higher than that of 2MP the number of pinholes might be lower in 4MP monolayer. In acidic solvent the N-atoms of the mercaptopyridines will be protonated. It is proposed that two effects, which exist at the same time, are responsible for the electron transfer process in acidic solution. First, there will be a repulsive interaction between the positively charged monolayer and the positively charged redox probe. Second, there is a repulsion among the positively charged monolayer molecules that results in a less compact monolayer. The charge transfer is dominated due to the latter effect. With the EIM the rate of electron transfer and the surface coverage were determined. 2MP and 4MP were examined as steel corrosion inhibitors in 3.5% aqueous NaCl solution using EIM. 2MP shows higher inhibition efficiency than 4MP
Kleinwächter, Michael. "Highly Constrained Dithienylethenes." Doctoral thesis, Humboldt-Universität zu Berlin, 2019. http://dx.doi.org/10.18452/19788.
Full textDiarylethenes are molecular switches that interconvert reversibly between an open and a closed isomer by irradiation with light. The efficiency of both photochemical reactions depends on several parameters, which, so far, are only insufficiently understood. One important factor in the cyclization reaction is the presence of two conformations of the open isomer of which only one is photochemically active. In the current work, a new class of diarylethenes is presented, in which the active conformation is covalently stabilized by alkyl chains of different lengths. As the central double bond is not fixated, double bond isomerization emerges as an additional pathway in these annulated diarylethenes. In dependence of the chosen ring size both open isomers convert with increased efficiency to the closed isomer upon irradiation. The efficiency of the cycloreversion process remains unaffected. The mechanism and dynamic of the photoreaction were investigated for selected compounds using transient absorption spectroscopy. Furthermore, electrochemical studies revealed that both the E- and the Z-isomer cyclize rapidly upon anodic oxidation or cathodic reduction. In general, the photochemical reactivity of annulated diarylethenes parallels that of normal diarylethenes and takes place exclusively in the cyclization/cycloreversion regime if irradiated directly. However, it was demonstrated that a selective Z→E double bond isomerization is possible, thus implementing a 3-state photoswitchable system. In extension of the project, the structure of diarylethenes was further stiffened. Using diverse synthetic approaches, two members of this class could be obtained. Photochemical investigation showed a conversion to the closed isomer of 60% upon irradiation with UV-light. In brief, the covalent fixation of diarylethenes represents an attractive strategy to increase the efficiency of the photochemical cyclization and extent the scope of diarylethenes to 3-state photochromic systems.
Wahl, Sebastian. "Shed Light on Cobalt Oxides for the Oxygen Evolution Reaction – An Operando Spectroelectrochemical Study." Doctoral thesis, Humboldt-Universität zu Berlin, 2020. http://dx.doi.org/10.18452/21108.
Full textIn this PhD thesis, the influence of different coordination geometries of oxygen atoms around a central cobalt atom is evaluated. Specifically, oxides containing tetrahedral and octahedral coordinated cobalt are synthesized, characterized and their activity towards the OER under alkaline conditions is evaluated. The electrochemical analyses reveal, that materials containing cobalt in tetrahedral oxygen coordination are better precatalysts for the OER. Furthermore, it is demonstrated that leaching of inactive metals from a structure increases the activity as well. Based on the previous mentioned, the new material Zn0.35Co0.65O is proposed. It crystallizes in the wurtzite structure and contains solely tetrahedrally coordinated atoms. In alkaline solutions, it transforms from wurtzite structure via a hydroxide to gamma-Co(O)OH, and nearly all Zn is leached from the structure. By this, a material with a large electrochemically active surface area is generated, that contains under-coordinated CoO(6-x) octahedra as active centers for the OER. Thus, outstanding catalytic performance is achieved. To generate further insights into the OER, diffuse reflectance ultraviolet visible (DRUV) spectroscopy is facilitated. Novel flow-cell designs are proposed, that allow to record DRUV spectra of catalysts under working conditions, i.e. operando. By this spectroelectrochemical approach, changes the catalysts undergo during the OER are observed. The phase transitions of Zn0.35Co0.65O are successfully followed, and it can be further shown, that CoAl2O4 and Co2SnO4 are only active at their surface. By comparison to ex situ analyses, clear structure-activity correlations are proposed, and deeper insights in the catalytically active structural motifs are obtained.
Lohan, Manja. "Bimetallocen- und Metallocen-Komplexe in Elektronentransfer- und Katalysestudien." Doctoral thesis, Universitätsbibliothek Chemnitz, 2011. http://nbn-resolving.de/urn:nbn:de:bsz:ch1-qucosa-66473.
Full textRühl, Nicolas. "Spektroelektrochemie an einzelnen (6,5)-Kohlenstoffnanoröhren." Doctoral thesis, 2014. https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-112162.
Full textIn the present study the electrochemistry of individual (6,5)-single wall carbon nano- tubes was investigated using a combination of electrochemical methods and single molecule fluorescence spectroscopy and microscopy. For this purpose a near infrared photoluminescence microscope was built and an electrochemical cell incorporated into a microfluidic chip was designed. To exclude oxygen and water during the ex- periments a glove box was constructed and for the electrolyte solutions a general preparation routine was executed, which included a degassing and drying of the solvent. A further project of this thesis was the design of a chemical vapor deposition apparatus to synthesize carbon nanotubes. The experiments provided clarity on the influence of process parameters such as pressure, temperature and flow rate of the reactants. The emission changes due to potential variation allowed for the determination of the reduction ERed = 0.15 V and oxidation potential EOx = 1.34 V of individual (6,5)- SWNTs with reference to a platinum electrode. Accordingly a total redoxpotential of ∆ERedOx = 1.19 V was obtained. The single molecule spectroscopic approach ensured further that only one specific CNT-chirality was investigated and that no potential drop like in CNT-films occured. The combination of the PL data and Raman intensity dependencies of the (6,5)-SWNT-S2-transition at potential changes allowed to define the quenching mechanism of the CNT emission. With the use of a difusion limited contact quenching model from Hertel et al. an inverse square proportionality between the (6,5)-SWNT emission and the charge carrier density was shown. Therefore it was concluded that the reduction and oxidation values obtained by emission changes do not correspond to the bandedges of the CNTs and that a determination of the bandgap should be done through absorption or Raman spectroscopy. The interparticle analysis of the (6,5)-SWNT reduction and oxidation potential sho- wed an absolute potential variation with respect to the reference values. The influences for this changes were classified into two cases: the so called “dispersing agent effects” and the “CNT structure defects”. It was assumed that these were a result of unequal distributed dispersing agents on the CNT surface or defects in the CNT lattice structure. Further, the interparticle determined correlation between reduction and oxidation values was attributed to the “CNT structure defects” and was therefore assumed to exercise the most dominant influence. Conversely, after the investigations of the intraparticle redox potentials, local areas were identified with a dependence to “dispersing agent effects”. In addition the width of the emission decrease as a result of the oxidation or reduction process of the (6,5)-SWNT was analysed. This investigation led to the conclusion that the charge carriers quenching efficiency mainly contributes to the overall width. Beyond that the data indicated that a distribution of 0.32 quenching centers per nanometer is needed for the total quenching of the photoluminescence. In addition to the redox chemistry analysis of pristine (6.5)-SWNTs, the investigation of the dependency in presence of ferrocene molecules showed that the interaction of the herein forming complex is of non-covalent type. This conclusion was based on two facts: on the one hand, the ferrocene molecules desorbed from the CNT surface when the solvent in the microfluidic channel was exchanged with a pure dimethylformamide solution and on the other hand, no permanent decrease in emission intensity due to covalent bond forming was observed. The potential-dependent PL behavior allowed for the assumption of a charge transfer from the adsorbed ferrocene molecules into the optically generated holes in the CNT. Furthermore the experimental data allowed to assume that this charge transfer increases with higher photon flux. With regard to applications with carbon nanotubes for electrolysis and photolysis of water, the redox chemistry of (6,5)-SWNTs was investigated in this solvent. With re- spect to the emission intensity in the organic electrolyte, two effects could be identified which were firstly the overall decrease of the PL, and secondly an irreversible reaction during anodic polarization, which manifested itself by a permanent quenching of the photoluminescence. The reaction conditions were determined with the result that water, optical generated electron-hole pairs and potential induced holes in the valence band formed a [SWNT(Q)] species, which caused the irreversible reduction of the CNT emission. Moreover, the evaluated reaction rate followed pseudo-zero-order kinetics, provided that the just mentioned parameters were constant. The investigation of this [SWNT(Q)] species in a ferrocene solution showed that the quenching effect of these defects was reduced for anodic polarisation by assuming an oxidation of the [SWNT(Q)] species by the Fc+ cations. The CVD apparatus enabled to synthesize carbon nanotubes. Ethanol was used as the carbon source and a mixture of iron and cobalt mixed with a zeolite worked as catalyst. The analysis of the various process parameters showed that the best distribution ratio between the desired (6,5)-SWNTs and other CNT chiralities or amorphous carbon were obtained for T = 750 °C . It was assumed that this behavior is due to the fact that at T < 750 °C burning processes of unwanted amorphous carbon residues only slightly occurred, and that at T > 750 °C the growth mechanism favoured chiralties with larger diameter. By varying the flow rate, only an absolute increase of all chiralities was observed. In this context it should be noted that nevertheless the chirality distribution can be improved to higher yields of (6,5)-SWNTs, by an adaptation of the pressure and temperature during synthesis. The experiments which investigated the impact of reaction pressure changes, indicated a relation in accordance to Le Chatelier law. Therefore lower pressure moved the equilibrium towards product formation of the ethanol-cracking reaction, which increased the molecule concentration of ethane, ethylene and methane and the overall CNT yield. However, this caused also an increment of the absolute amorphous carbon concentration. According to that, it was found that a pressure of p = 9 mbar yielded the best (6.5)-SWNT to amorphous carbon ratio. The experiments performed in this thesis allowed to gain new insights about the sensitivity of the emission of (6,5)-SWNTs due to charging. Especially the deter- mination of the correlation between the photoluminescence and charging level of the CNTs will allow for a more selective use of carbon nanotubes – for example in sensors. In this context the analysis of the interparticle redoxpotential distribution showed precisely the effects of solvent and defect densities on the electronic structure of CNTs. Further the reasons for different values of the reduction and oxidation potential, which are found in literature were explained. For the future this information will allow a better selection of the spectroscopic method to determine the band edges of carbon nanotubes. The spectroelectrochemical analysis of the (6,5)-SWNTs in the solvent water and especially the determination of the kinetics for the observed irreversible reaction gave insight in the interaction between water molecules and carbon nanotubes. These results are particularly important, when carbon nanotubes are used as electrode material. For example in the electrochemical and photolytic generation of hydrogen and oxygen of water. Besides the covalent bond forming reaction of (6,5)-SWNTs in water under anodic potential and optical excitation, the non-covalent bonding reaction between ferrocene molecules and SWNTs was shown and analysed. The different impact of these two interaction on the electronic structure could then be demonstrated and explained
Tarábek, Ján [Verfasser]. "Elektropolymerisation, Spektroelektrochemie und Potentiometrie von funktionalisierten leitfähigen Polymeren / von Ján Tarábek." 2004. http://d-nb.info/973468327/34.
Full textReitzenstein, Dörte. "Donor-Acceptor Conjugated Polymers for Application in Organic Electronic Devices." Doctoral thesis, 2010. https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-53939.
Full textIm ersten Teil dieser Arbeit wurden die drei Polycarbazole Poly[N-((4-dimesitylboryl)-3,5-dimethylphenyl)-carbazol]-2,7-diyl P1, Poly[N-((4-dimesitylboryl)-3,5-dimethylphenyl)-carbazol]-3,6-diyl P2 und Poly[N-(4-(diphenylmethylen)-phenyl)-carbazol]-2,7-diyl P3 mittels Yamamoto Kupplung synthetisiert und ihre spektroskopischen und elektrochemischen Eigenschaften untersucht. Absorptions- und Fluoreszenzeigenschaften von P1 und P3 sind denen anderer 2,7-verknüpfter Polycarbazole ähnlich, wohingegen P2 eine CT Absorptionsbande zeigt, die durch die Verschiebung von Elektronendichte vom Stickstoff des Carbazoldonors zum Triarylboranakzeptor verursacht wird. Daraus ergeben sich negativ solvatochromes Absorptions- und positiv solvatochromes Fluoreszenzverhalten und eine deutlich erhöhte Fluoreszenzquantenausbeute in Lösung und im Festkörper verglichen mit anderen 3,6-verknüpften Polycarbazolen. Das bedeutet, dass die spektroskopischen Eigenschaften durch die Art der C-C-Verknüpfung gesteuert werden können: das 2,7-verknüpfte Polycarbazol P1 wird durch den Akzeptorsubstituenten aufgrund des starren Polymergerüsts, dem eine poly-para-phenylenartige und damit stärker delokalisierte Struktur zugrunde liegt, nicht beeinflusst. Im Gegensatz dazu treten beim 3,6-verknüpften Polycarbazol P2 die Eigenschaften der Monomereinheit aufgrund der flexibleren 1,4-diaminobiphenyl Struktur in den Vordergrund. Die Oxidationsprozesse von P1-P3 wurden im Detail mittels Cyclovoltammetrie untersucht. Die Ergebnisse stimmen mit Literaturwerten überein. Außerdem wurde bei den Messungen von P1 und P2 ein reversibler Reduktionsprozess, der am Boranzentrum stattfindet, beobachtet. Eine Reduktion der Carbazoleinheit konnte hingegen nicht gefunden werden. Mit der Herstellung von OLEDs der Struktur ITO/P2/Al konnte blaue Elektrolumineszenz mit den CIE Farbkoordinaten (0.17, 0.21) nachgewiesen werden. Im zweiten Teil der Arbeit wurde das low band gap Polyradikal Poly{[((2,3,4,5,6-pentachlorphenyl)-bis(2,3,5,6-tetrachlorphenyl)methyl radical)-4,4‘-diyl]-alt-4,4‘-bis(vinylphenyl)-4-(2-ethylhexyloxy)phenylamin} P4 mittels Horner-Emmons Reaktion synthetisiert. Im NIR beobachtet man eine IV-CT Absorptionsbande, die durch einen Elektronentransfer vom Triarylamindonor zum PCTM-Radikalakzeptor hervorgerufen wird. Dieser elektronische Übergang ist auf eine Monomereinheit begrenzt wie der Vergleich mit den Monomerabsorptionsspektren zeigt. HOMO und LUMO Energien von P4, die anhand der Cyclovoltammogramme bestimmt wurden, liegen bei -5.5 und -4.5 eV. Die im Vergleich zur optischen Energielücke (1.2 eV) kleinere elektrochemische Energielücke (1.9 eV) ist wahrscheinlich auf Ionenpaareffekte bei den elektrochemischen Messungen zurückzuführen, deutet aber auch auf eine geringe Excitonenbindungsenergie hin. Transiente Absorptionsspektren zeigen die spektralen Charakteristika von oxidiertem Triarylamindonor und reduziertem PCTM-Akzeptor vergleichbar mit den Spektren der spektroelektrochemischen Messungen, bei denen eine Lösung von P4 jeweils nacheinander reduziert und oxidiert wurde. Dadurch konnte der Elektronentransferprozess, der zur Ausbildung der IV-CT Bande führt, zweifelsfrei nachgewiesen werden. Der IV-CT Zustand zerfällt biexponentiell. Der schnelle, lösungsmittelabhängige Zerfall beschreibt den direkten Übergang vom IV-CT Zustand in den elektronischen Grundzustand. Dagegen wird der langsame, lösungsmittelunabhängige Zerfall einer Gleichgewichtseinstellung zwischen IV-CT Zustand und vollständig ladungsgetrenntem Zustand, der durch Ladungswanderung entlang der Polymerkette erreicht wird, zugeschrieben. In OFETs mit P4 als Halbleiter und einer zusätzlich isolierenden, organischen PPcB Schicht wurde ein ausgeglichener, ambipolarer Ladungstransport mit Loch- und Elektronenbeweglichkeiten von ca. 3 × 10-5 cm2 V-1 s-1 gefunden. Polymer/Polymer BHJ Solarzellenmodule mit der Struktur Glas/ITO/PEDOT:PSS/(P3HT/P4 1:4)/Ca/Al hatten einen Wirkungsgrad von 0.0031 % bei einer Leerlaufspannung VOC = 0.38 V, einem Kurzschlussstrom JSC = 0.028 mA cm-2 und einem Füllfaktor FF = 0.29. Die ungeeignete Morphologie der P4- und P3HT/P4-Schichten als Ursache für die unbefriedigende Performance von OFETs und Solarzellen lässt solche Anwendungen für P4 wenig sinnvoll erscheinen. Dagegen verdient die Hypothese der Ladungswanderung im angeregten Zustand eine vertiefte Untersuchung
Bouša, Milan. "Příprava a charakterizace nanomateriálů pro elektrochemické ukládání energie." Doctoral thesis, 2017. http://www.nusl.cz/ntk/nusl-369540.
Full textHartleb, Holger Edgar Heinz Erich. "Spektroelektrochemische Untersuchung von halbleitenden Kohlenstoffnanoröhren." Doctoral thesis, 2015. https://nbn-resolving.org/urn:nbn:de:bvb:20-opus-116628.
Full textThe main focus of this work was on spectroelectrochemical studies of semiconducting SWNTs. For the first time, absorption and photoluminescence spectra of one and the same sample were recorded simultaneous under electrochemical control of the potential. It was shown, that the optical method has a significant influence on the resulting band gap. Therefore, the term electrochemical band gap, which has developed in literature, is problematic due to a missing general definition. Photoluminescence measurements yield the smallest band gap in comparison to Raman or absorption measurements. This was attributed to the diffusion limited quenching of excitons at charges. Furthermore, the optical spectra of charged SWNTs were analysed and the underlying electronic changes were discussed. In addition to SWNTs, the transition metal dichalcogenides MoS2 and WS2 were studied with spectroelectrochemical methods as well. Striking, when compared to the measurements of SWNTs, was the broad potential range during which the decrease of the excitonic signals could be observed. This can be attributed to the different electronic structures of TMDs and SWNTs and the small amount of mono layers in the TMD samples. Under the influence of charges it was furthermore possible to observe a signal in the absorption spectra, which points to the formation of trions. In the last part of this work an electrochemical cell for the investigation of hydrogen production at metallic SWNT electrodes was developed and tested. The activation procedure of SWNTs with sulphuric acid, which was published by Das et al., was successfully reproduced, and a catalytic effect on the hydrogen production by the SWNTs was observed
Miesel, Dominique. "Beeinflussung der Metall-Metall-Interaktionen in Ferrocenyl-funktionalisierten Phospholen." Doctoral thesis, 2015. https://monarch.qucosa.de/id/qucosa%3A20420.
Full textHabániková, Shannelle Diana. "Využití kvantitativní elektronové paramagnetické rezonance (EPR) a komerčně dostupných EPR standardů při studiu elektrochemické oxidace substituovaných tetrathiafulvalenů." Master's thesis, 2019. http://www.nusl.cz/ntk/nusl-396694.
Full textAlakhras, Fadi. "Spectroelectrochemistry of Intrinsically Conducting Furan-Thiophenes Copolymers." Doctoral thesis, 2007. https://monarch.qucosa.de/id/qucosa%3A18979.
Full textElectrochemical copolymerization of furan and thiophene or 3-chlorothiophene was successfully realized in a solvent system consisting of boron trifluoride ethyl ether (BFEE) + ethyl ether (EE) (ratio 1:2) at constant electrode potential. The addition of trifluoroacetic acid (TFA) (10 % by volume) to BFEE + EE (ratio 1:2) decreased the oxidation potential of the monomers; the polymerization rate was also accelerated because TFA increases the ionic conductivity of the electrolyte. The homopolymers have only one redox peak caused by polymer oxidation and reduction. Electrochemical copolymerization both at different potentials and with different thiophene or 3-chlorothiophene concentrations is investigated. The copolymers show one anodic/cathodic peak couple that appears at a position quite different from the positions observed with homopolymers. More thiophene or 3-chlorothiophene units are incorporated into the copolymer film with an increasing polymerization potential of the copolymer and/or with an increasing concentration of thiophene or 3- chlorothiophene in the feed. An electropolymerization mechanism of copolymers has been proposed, and the copolymers show a fairly good long-term stability of the redox activity after cycling in acetonitrile. In situ UV-Vis spectra of the homo- and copolymer films were measured and λ1max which corresponds to the π → π* transition is determined. The optical transition with λ2max from the valence band into the higher bipolaron band is also assigned. The band gap (Eg) for homo- and copolymer films from a direct interband transition is estimated from the absorption edge of the spectrum. The redox thermodynamics of the homo- and copolymer films suggest that one electron is removed from polymer segments containing four monomer units. The studied conducting films show a single conductivity change with a stable conductivity up to EAg/AgCl= 2 V. The conductivity of these films is almost restored when the potential shift direction is reversed. Polyfuran compared to polythiophene, has a lower conductivity and the conductivity of poly(3-chlorothiophene) is around one order of magnitude lower than that of polythiophene. The in situ conductivity properties of the copolymers are not the sum of those of the individual homopolymers. This result may eliminate the possibility that the copolymers can be considered as block copolymers. Vibrational spectra of homo- and copolymer films investigated in this study have been obtained using FTIR spectroscopy. The results indicate that α-α' coupling of radical cations has taken place in the copolymerization. This is a characteristic of α-substituted five-membered heterocyclic compounds. The electrochemical degradation mechanism of furan-thiophene copolymers is also described using the obtained spectra. The in situ resonance Raman spectroscopy of the copolymers shows spectroscopic properties intermediate between those of homopolymers. At higher polymerization potentials and at higher concentrations of thiophene or 3-chlorothiophene in the feed more thiophene or 3-chlorothiophene units are incorporated into the copolymer chains. It is obvious that the Raman spectra of the copolymers are more complex than those of homopolymers, which makes the assignment difficult. However, the in situ Raman spectra of the copolymers are reminiscent of those of the homopolymers. The spectroelectrochemical properties of the copolymers confirmed that the copolymers show intermediate characteristics between the homopolymers, implying that oxidation of monomers is possible and the copolymer chains may accordingly be composed of furan and thiophene or 3-chlorothiophene units.
Klusáčková, Monika. "Charakterizace elektrody modifikované pyridinoporfyrazinátovým filmem a její využití v elektrochemickém senzoru." Master's thesis, 2011. http://www.nusl.cz/ntk/nusl-312285.
Full textSchnaubelt, Linda. "Redox-coupled Spin Transition in Co(2+/3+) Complexes with Triarylamine-substituted Polypyridyl-based Ligands." 2019. https://monarch.qucosa.de/id/qucosa%3A34787.
Full textKlusáčková, Monika. "Charakterizace a analytické využití pyridinoporfyrazinátu kobaltu jako neplatinového mediátoru v elektrokatalýze vodíku." Doctoral thesis, 2019. http://www.nusl.cz/ntk/nusl-405498.
Full textLohan, Manja. "Bimetallocen- und Metallocen-Komplexe in Elektronentransfer- und Katalysestudien." Doctoral thesis, 2010. https://monarch.qucosa.de/id/qucosa%3A19479.
Full textPreuß, Andrea. "Synthesis and Characterization of Transition Metal Complexes as well as their Application in the Formation of Metal-based Materials and the Investigation of their (Spectro)Electrochemical Behavior." 2020. https://monarch.qucosa.de/id/qucosa%3A71451.
Full textDie vorliegende Arbeit befasst sich mit der Synthese und Charakterisierung von maßgeschneiderten Übergangsmetall-basierten Precursoren und deren Anwendung in der metallorganischen chemischen Gasphasenabscheidung (MOCVD), in der Flammenbeschichtung (CCVD), oder in der Rotationsbeschichtung. Dafür wurden Kupfer-, Ruthenium-, Palladium- und Gold-haltige Komplexe hergestellt und bezüglich ihrer thermischen Eigenschaften, insbesondere das Zersetzungsverhalten und die Flüchtigkeit, charakterisiert. Cu(II)- und Pd(II)-β-Ketoiminate wurden synthetisiert und in der MOCVD oder in der Rotationsbeschichtung genutzt, um metallische und metalloxidische Materialien abzuscheiden. Ruthenium Komplexe des Typs Ru(CO)2(PEt3)2(O2CR)2 (R = Me, Et, iPr, tBu, CH2OMe, CF3) wurden hinsichtlich ihrer physikalischen Eigenschaften in Abhängigkeit der verschiedenen Substituenten der Carboxylate untersucht. Dabei lag der Fokus im Besonderen auf der thermischen Zersetzungen, welche mittels VT IR (variable Temperatur-Infrarot) Spektroskopie, TG-MS (Thermogravimetrie-Massenspektrometrie) Untersuchungen und DFT (Dichtefunktionaltheorie) Berechnungen genauer beleuchtet wurden. Dabei war es anhand der erhaltenen Ergebnisse möglich Zersetzungsmechanismen zu formulieren. Weiterhin wurden Goldcarboxylate der Art [AuO2CCH2OMe(PR’3)] (R’ = Et, nBu) synthetisiert und in der CCVD untersucht, um Au und SiOx:Au Materialien herzustellen, welche im Weiteren als heterogene Katalysatoren für die Reduktion von 4-Nitrophenol genutzt wurden. Das Abscheideverhalten von Zinkdiolaten in der MOCVD zur Erzeugung von dünnen Zinkoxidfilmen wurde beispielsweise in Hinblick des Einflusses auf die Kristallinität der Filme untersucht. Im zweiten Teil der Dissertation wird die Synthese von Fc-funktionalisierten (Fc = Fe(η5-C5H4)(η5-C5H5)) polyaromatischen Kohlenwasserstoffen (Naphthalen, Phenanthren, Pyren) diskutiert. Der Schwerpunkt lag dabei auf der Untersuchung des Elektrontransferverhaltens zwischen den Redox-aktiven Gruppen in Abhängigkeit der Substituenten und des Substitutionsmusters der π-konjugierten Brücke. Diese Verbindungen wurden mittels Röntgeneinkristallstrukturanalyse und DFT-Berechnungen untersucht um festzustellen, ob eine Wechselwirkung zwischen den Fcfunktionalisierten Arenen und SWCNTs (einwandige Kohlenstoffnanoröhren) möglich ist. Entbündelungsversuche von SWCNTs in Anwesenheit eines Fc-funktionalisierten Pyrens lieferten ein neuartiges Hybridsystem, welches Fc-basierte Redoxprozesse zeigte.