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On the Electrochemistry and Spectroelectrochemistry of Small Model Star‐Shaped Compounds: 1,3,5‐Triaryl‐1‐Methoxybenzenes and 2,4,6‐Triaryl‐1,3,5‐Trimethoxybenzenes
Authors:Dr. Peter Rapta  Dr. Vladimír Lukeš  Dr. Krzysztof R. Idzik  Prof. Rainer Beckert  Prof. Lothar Dunsch
Affiliation:1. Center of Spectroelectrochemistry, Department of Electrochemistry and Conducting Polymers, Leibniz‐Institute for Solid State and Materials Research, 01171 Dresden (Germany), Fax: (+49)?351 4659 811;2. Institute of Physical Chemistry and Chemical Physics, Faculty of Chemical and Food Technology, Slovak University of Technology, Radlinskeho 9, 81237 Bratislava (Slovak Republic), Fax: +421 2 52926032;3. Institute of Organic and Macromolecular Chemistry, FSU Jena, 07743 Jena (Germany);4. Faculty of Medicinal Chemistry and Microbiology, Wroclaw University of Technology, PL 50‐370 Wroclaw (Poland)
Abstract:Model structures of 1,3,5‐triarylbenzenes with a substituted benzene core linked to thienyl or 3,4‐ethylenedioxythienyl (EDOT) terminal groups are studied by electrochemical and in situ ESR/UV/Vis/NIR spectroelectrochemical techniques. Oxidative polymerization of the monomers results in C? C coupling of the thiophene moieties in the 5‐position, forming dimeric structures with bithiophene linkers as the first step. Both the doubly charged protonated dimer and the new dimer formed after proton release are studied in detail for 2,4,6‐tris[2‐(3,4‐ethylenedioxythienyl)]‐1‐methoxybenzene. Quite high stability of the doubly charged σ dimer formed on oxidation with unusual redox behavior at the electrode is observed. Density functional calculations of the molecular structure as well as spectroscopic and electronic properties of charged states in 1,3,5‐triarylbenzene derivatives in the monomeric, dimeric, and oligomeric form are presented. The complex spectroelectrochemical response of a thin solid film formed on the electrode surface upon potentiodynamic polymerization indicates the existence of different charge states of oligomeric structures within the solid matrix.
Keywords:cyclic voltammetry  density functional calculations  electrochemistry  hyperbranched polymers  trithienylbenzenes
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