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Neutral and Oxidized Triisopropylsilyl End‐Capped Oligothienoacenes: A Combined Electrochemical,Spectroscopic, and Theoretical Study
Authors:Juan Aragó  Pedro?M Viruela Prof  Enrique Ortí Prof?Dr  Reyes Malavé?Osuna Dr  Barbara Vercelli Dr  Gianni Zotti Dr  Víctor Hernández Prof  Juan?T López?Navarrete Prof?Dr  John?T Henssler Dr  Adam?J Matzger Prof?Dr  Yoshitake Suzuki Dr  Shigehiro Yamaguchi Prof?Dr
Institution:1. Instituto de Ciencia Molecular, Universidad de Valencia, Valencia 46980 (Spain), Fax: (+34)?963543274;2. Istituto CNR per l'Energetica e le Interfasi, c.o. Stati Uniti 4, 35127 Padova (Italy);3. Department of Physical Chemistry, University of Málaga, 29071 Málaga (Spain), Fax: (+34)?952‐132000;4. Department of Chemistry and the Macromolecular Science and Engineering Program, University of Michigan, 930 North University, Ann Arbor, Michigan 48109‐1055 (USA);5. Department of Chemistry, Graduate School of Science, Nagoya University, Furo, Chikusa, 464‐8602 Nagoya (Japan)
Abstract:This work presents an analysis of the structural, electrochemical, and optical properties of a family of triisopropylsilyl end‐capped oligothienoacenes (TIPS‐ Tn ‐TIPS, n=4–8) by combining cyclic voltammetry, spectroscopic techniques, and quantum‐chemical calculations. TIPS‐ Tn ‐TIPS compounds form stable radical cations, and dications are only obtained for the longest oligomers (n=7 and 8). Oxidation leads to the quinoidization of the conjugated backbone, from which electrons are mainly extracted. The absorption and fluorescence spectra show partially resolved vibronic structures even at room temperature, due to the rigid molecular geometry. Two well‐resolved vibronic progressions are observed at low temperatures due to the vibronic coupling, with normal modes showing wavenumbers of ≈1525 and ≈480 cm?1. Optical absorption bands display remarkable bathochromic dispersion with the oligomer length, indicative of the extent of π conjugation. The optical properties of the oxidized compounds are characterized by in situ UV/Vis/NIR spectroelectrochemistry. The radical cation species show two intense absorption bands emerging at energies lower than in the neutral compounds. The formation of the dication is only detected for the heptamer and the octamer, and shows a new band at intermediate energies. Optical data are interpreted with the help of density functional theory calculations performed at the B3LYP/6‐31G** level, both for the neutral and the oxidized compounds.
Keywords:density functional calculations  electrochemistry  fluorescence  oligothienoacenes  optical properties  spectroelectrochemistry
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