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Potential-Driven Conductivity of Polypyrroles, Poly-N-Alkylpyrroles, and Polythiophenes: Role of the Pyrrole NH Moiety in the Doping-Charge Dependence of Conductivity

Authors :
L. 'Bert' Groenendaal
A. Berlin
Enrico Dalcanale
Gianni Zotti
Sandro Zecchin
and Gilberto Schiavon
Barbara Vercelli
Source :
Chemistry of Materials. 15:4642-4650
Publication Year :
2003
Publisher :
American Chemical Society (ACS), 2003.

Abstract

The in situ conductivity vs p-doping charge of low-defect polypyrroles, N-substituted polypyrroles, and polythiophenes has been investigated in acetonitrile in the presence of the weakly coordinating perchlorate ion as supporting electrolyte. In-situ ESR and EQCM measurements have given supporting information on polymer structure and conduction carriers. The structures of the polymers cover a wide range of conjugative, geometrical, and solvation conditions, but the conductive pattern follows simply the polymer ring type (pyrrole, N-substituted pyrrole, or thiophene). In polythiophenes an initial region of low conductivity, due to strongly spin-dimerized polarons, is followed by an increase of conduction to a plateau of high conductivity. N-substituted polypyrroles display a linear increase of conductivity with charge followed by a plateau of conductivity. Polypyrroles without N-substitution show an increase of conductivity to a maximum followed by a symmetrical decrease to zero at a charge corresponding t...

Details

ISSN :
15205002 and 08974756
Volume :
15
Database :
OpenAIRE
Journal :
Chemistry of Materials
Accession number :
edsair.doi...........297bfd52204b5c83f87ac043f00d9aa6
Full Text :
https://doi.org/10.1021/cm030336i