Controlling the electronic properties of polythiophene through the insertion of nonaromatic thienyl S,S-dioxide units

Citation
G. Barbarella et al., Controlling the electronic properties of polythiophene through the insertion of nonaromatic thienyl S,S-dioxide units, CHEM MATER, 11(9), 1999, pp. 2533-2541
Citations number
32
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science","Material Science & Engineering
Journal title
CHEMISTRY OF MATERIALS
ISSN journal
08974756 → ACNP
Volume
11
Issue
9
Year of publication
1999
Pages
2533 - 2541
Database
ISI
SICI code
0897-4756(199909)11:9<2533:CTEPOP>2.0.ZU;2-J
Abstract
A new class of thiophene-based polymers characterized by the presence of on e nonaromatic thienyl S,S-dioxide moiety (O) to every two, four, and six ar omatic thienyl units (T) was prepared from the newly synthesized precursors TOT, TTOTT, and TTTOTTT, and electrochemically characterized. The polymers displayed remarkably greater electron affinities than that of polythiophen e and could be reversibly n-doped at moderate potentials, while still maint aining the property of also being p-doped at moderate potential values. All polymers were characterized by good p-doping/undoping cyclability, while a t least four aromatic units to every nonaromatic one were needed to ensure good n-doping/undoping cyclability. ZINDO/S//PM3 calculations on TOT, TTOTT , and TTTOTTT and on (TOT)(3) and (TTOTT)3, as models for the corresponding polymers, showed that the presence of the nonaromatic units does not affec t the pi,pi* character of the frontier orbitals but decreases their energy, in particular that of the LUMO. The calculations allow the cyclability pro perties of the polymers in the p- and n-doping domains to be rationalized i n terms of delocalization of the electronic charge of p- and n-type charge carriers over the aromatic units.