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Experimental and Theoretical Study of the p- and n-Doped States of Alkylsulfanyl Octithiophenes

Authors :
Luisa Schenetti
Adele Mucci
Carlo Bruno
Francesco Paolucci
Lisa Preti
Claudio Fontanesi
Francesca Parenti
Davide Vanossi
Massimo Marcaccio
Rois Benassi
Bruno C.
Paolucci F.
Marcaccio M.
Benassi R.
Fontanesi C
Mucci A.
Parenti F.
Preti L.
Schenetti L.
Vanossi D.
Source :
The Journal of Physical Chemistry B. 114:8585-8592
Publication Year :
2010
Publisher :
American Chemical Society (ACS), 2010.

Abstract

The charge-transfer and spectral properties of two octithiophenes, namely 4',4''',3'(v),3(v)'-tetra(octylsulfanyl)-2,2':5',2'':5'',2''':5''',2'(v):5'(v),2(v):5(v),2(v)':5(v)',2(v)''-octithiophene and 4,3'',4(v),4(v)''-tetrabromo-4',4''',3'(v),3(v)'-tetra[(R)-2-methylbutylsulfanyl]-2,2':5',2'':5'',2''':5''',2'(v):5'(v),2(v):5(v),2(v)':5(v)',2(v)''-octithiophene, OT1 and OT2, respectively, are characterized by cyclic voltammetry and spectroelectrochemistry under ultradry conditions. The analysis of the voltammetric results shows the formation of up to the dication for both OT1 and OT2 and up to the tetraanion (OT1) and trianion (OT2) anions. The optical properties of the OT1 (2+, 1+, neutral, 1-, 2-) species were probed by in situ UV-vis-NIR spectroelectrochemistry. The calculated standard potentials at the B3LYP/cc-pVTZ level of the theory allowed the rationalization of the experimental electrochemical results. The UV-vis-NIR spectra were successfully compared with the theoretical electronic transitions and oscillator strength data obtained by time-dependent B3LYP/6-31G* calculations. Theoretical redox potentials and optical transitions properties are calculated including "the solvent effect" within the CPCM model. The consistency obtained between experimental and theoretical results indicates the existence of the hypothesized high-spin/high-charge p- and n-doped electronic states for the OT1 and OT2 octithiophenes here studied.

Details

ISSN :
15205207 and 15206106
Volume :
114
Database :
OpenAIRE
Journal :
The Journal of Physical Chemistry B
Accession number :
edsair.doi.dedup.....16342ec176b5283a867b1958a277f9e4
Full Text :
https://doi.org/10.1021/jp9122612