Preparation and spectroelectrochemical behaviour of a new alternate copolymer of 3,3′-di-n-octyl-2,2′-bithiophene and fluoren-9-one

被引:17
作者
Demadrille, R
Divisia-Blohorn, B
Zagorska, M
Quillard, S
Rannou, P
Travers, JP
Pron, A
机构
[1] Univ Grenoble, CEA Grenoble, CNRS,UMR 5819,SPrAM, DRFMC,Lab Phys Met Synthet, F-38054 Grenoble 9, France
[2] Univ Grenoble 1, CNRS,UMR 5819,SPrAM, CEA, Lab Electrochim Mol & Struct Interfaces,DRFMC, F-38054 Grenoble 9, France
[3] Warsaw Univ Technol, Fac Chem, PL-00664 Warsaw, Poland
[4] Inst Mat Jean Rouxel, F-44322 Nantes 3, France
关键词
D O I
10.1039/b304551j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The synthesis and spectroelectrochemical behaviour of a new solution processible conjugated polymer, namely poly[{5,5'-(3,3'-di-n-octyl-2,20-bithiophene)}-alt-(2,7-fluoren-9-one)] (abbreviated as PDOBTF), are described. PDOBTF can be considered as the first member of a new family of conjugated copolymers poly(oligothiophene-alt-fluoren-9-one)s-whose properties can be tuned by changing the length of the oligothiophene segments and their regiochemistry. PDOBTF can be obtained by oxidative polymerisation of 2,7-bis(4-octylthien-2-yl)-fluoren-9-one or by condensation polymerisation of 2,7-bis(5-bromo-4-octylthien-2-yl)-fluoren-9-one using a modification of Yamamoto coupling. Both preparation methods lead to a mixture of polymeric and oligomeric species and require post-polymerisation fractionating if high molecular fractions are to be obtained. Oxidative polymerisation gives product of a higher molecular weight (M(n) = 41.0 kDa, M(w)/M(n) = 1.81 for the highest molecular weight fraction) as compared to the one prepared by Yamamoto condensation polymerisation (M(n) = 13.3 kDa, M(w)/M(n) = 1.45 for the highest molecular weight fraction). Electrochemical oxidation of PDOBTF in an nonaqueous electrolyte (0.1 M Bu(4)NBF(4)/acetonitrile) gives rise to an anodic peak at E = 835 mV, which can be ascribed to the p-type doping of the copolymer. The extension of the potential to E = 1500 mV results in the oxidative degradation of the copolymer and induces total loss of its electroactivity. UV-Vis-NIR and Raman spectroelectrochemical data are consistent with the oxidative doping. The latter technique enables the monitoring of the doping-induced changes in both structural sub-units of the copolymer: the bithiophene sub-unit and the fluoren-9-one one.
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页码:1479 / 1484
页数:6
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