An investigation of electrochemically and chemically polymerized indole
Identifieur interne : 000503 ( France/Analysis ); précédent : 000502; suivant : 000504An investigation of electrochemically and chemically polymerized indole
Auteurs : D. Billaud [France] ; E. B. Maarouf [Maroc] ; E. Hannecart [Belgique]Source :
- Materials Research Bulletin [ 0025-5408 ] ; 1994.
Abstract
Doped polyindole can be obtained either after anodic oxidation of indole, C8NH7, in various electrolytic solutions or after indole chemical oxidation in acetonitrile - oxidizing agent (FeCl3, CuCl2, KIO3) solutions. This conducting polymer exhibits a good air stability with room temperature electrical conductivities, in the range 10−3 to 10−1 S.cm−1, depending on the nature of the counterion and on the polymerization process. The influence of the experimental synthesis conditions on the morphology of the chemically obtained polyindole is examined.
Url:
DOI: 10.1016/0025-5408(94)90147-3
Affiliations:
- Belgique, France, Maroc
- Grand Est, Lorraine (région), Vienne (Autriche)
- Nancy, Vienne (Autriche)
- Université Henri Poincaré
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<front><div type="abstract" xml:lang="en">Doped polyindole can be obtained either after anodic oxidation of indole, C8NH7, in various electrolytic solutions or after indole chemical oxidation in acetonitrile - oxidizing agent (FeCl3, CuCl2, KIO3) solutions. This conducting polymer exhibits a good air stability with room temperature electrical conductivities, in the range 10−3 to 10−1 S.cm−1, depending on the nature of the counterion and on the polymerization process. The influence of the experimental synthesis conditions on the morphology of the chemically obtained polyindole is examined.</div>
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