ELECTROCHEMISTRY OF END-CAPPED OLIGOTHIENYLS - NEW INSIGHTS INTO THE POLYMERIZATION MECHANISM AND THE CHARGE STORAGE, CONDUCTION AND CAPACITIVE PROPERTIES OF POLYTHIOPHENE

被引:41
作者
ZOTTI, G
SCHIAVON, G
BERLIN, A
PAGANI, G
机构
[1] UNIV MILAN,DIPARTIMENTO CHIM ORGAN & IND,I-20133 MILAN,ITALY
[2] CNR,CTR SPECIALI SISTEMI ORGAN,I-20133 MILAN,ITALY
关键词
D O I
10.1016/0379-6779(93)91202-D
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The kinetics of anodic coupling to dimers of thiophene oligomers (n = 3-5), methyl protected at one alpha-terminal position, is second order in oligomer concentration and evidences high activation enthalpies and negative activation entropies. Activation free energies are linearly related to the inverse of the oligomer length n (the dimerization rate decreases as n is increased). Thin films of methyl end-capped thiophene oligomers (n = 4, 6, 8 and 10) display reversible oxidations from a single one-electron step (tetramer) to a single two-electron step (octamer and decamer) through two separate one-electron steps (hexamer). ESR indicates strong magnetic dimerization for the one-electron-oxidized hexamer. The close resemblance of the electrochemical and ESR behaviour of the hexamer with that of polythiophene suggests that oxidation of the latter occurs via hexameric spin-dimerized polarons. The conductive and capacitive proper-ties of the end-capped oligomers (n = 6, 8 and 10) were investigated by in situ conductivity and chronopotentiometry. While conductivity of octamer and decamer is displayed at the two-electron (bipolaron) state, the hexamer, insulating at this state, is conducting at the mixed-valence polaron-bipolaron state; capacitive responses are evidenced at the bipolaron state for the octamer and decamer only. The difference of conductive and capacitive behaviour between the hexamer and the higher oligomers is explained by charge localization in hexameric segments.
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页码:81 / 87
页数:7
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