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Structural Changes in 2‐Diarylthiophene‐Substituted Starburst Compounds upon Charging: A Theoretical and Spectroelectrochemical Study
Authors:Roland Šolc  Vladimír Lukeš Dr  Peter Rapta Dr  Horst Hartmann Prof Dr  Lothar Dunsch Prof Dr
Institution:1. Institute of Physical Chemistry and Chemical Physics, Slovak University of Technology, Radlinského 9, 81 237 Bratislava (Slovakia);2. Department of Electrochemistry and Conducting Polymers, Leibniz Institute of Solid State and Materials Research, IFW Dresden, Helmholtzstrasse 20, 01069 Dresden (Germany);3. Institute of Applied Photophysics, University of Technology Dresden, 01062 Dresden (Germany)
Abstract:The role of charging in structural changes of 2‐diarylaminothiophene‐substituted starburst compounds is clarified by combining theoretical and spectroelectrochemical studies. A systematic and comparative theoretical calculation based on density functional theory and semiempirical Austin Model 1 (AM1) calculations is performed on the neutral and charged states of four model tris(5‐diarylamino‐5‐thienyl)‐terminated starburst compounds with a central triphenylamine and 1,3,5‐triphenylbenzene moiety. Our results indicate that the charging of molecules leads to structural changes by quinoid‐type components mostly on the dendrimers terminated by phenothiazinyl fragments. Based on the optimal geometries, the spectroscopic properties were calculated using the semiempirical Zerner’s intermediate neglect overlap method. The presented theoretical results and the spin electron distributions of charged states and their spectra are supported by the spectroelectrochemical observations caused by the different electron localization within the studied molecules after charging. The satisfactory agreement between theoretical electronic transitions and experimental values indicates that a rational design of tunable molecular layers in organic devices based on the starburst compounds described is possible.
Keywords:charged state  dendrimers  density functional calculations  spectroelectrochemistry  starburst compounds
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