Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1443696 | Synthetic Metals | 2006 | 8 Pages |
Abstract
Ab initio quantum-chemical methods have been used to investigate how the inclusion of ester groups on polythiophene chains can affect some properties of the polymer. For this purpose, MP2/6-31G(d,p) calculations have been performed on three isomers: dimethyl 2,2â²-bithiophene-4,4â²-dicarboxylate, dimethyl 2,2â²-bithiophene-3,3â²-dicarboxylate and dimethyl 2,2â²-bithiophene-3,4â²-dicarboxylate, which mimic the tail-to-tail, head-to-head and head-to-tail polymer linkages. After considering different arrangements of the ester substituents for each isomer, results allow conclude that introduction of ester groups at the 4,4â²-positions does not alter the properties of 2,2â²-bithiophene. In contrast, 3,3â²- or 3,4â²-disubstitutions produce significant changes in both the structural and electronic properties. These results may assist in designing soluble polythiophene-based polymers.
Related Topics
Physical Sciences and Engineering
Materials Science
Biomaterials
Authors
Cintia Ocampo, Carlos Alemán, David Curcó, Jordi Casanovas,