Published April 29, 1998 | Version v1
Miscellaneous Open

Realization and characterization of a cellulose and conducting polymer-based ultrathin films composite material

Description

This work was dedicated to the realization and the characterization of an organic composite material in order to obtain organized ultrathin films with high conductivity and good mechanical properties. In this purpose, the Langmuir-Blodgett (LB) film of a crosslinked alkyl cellulose (rigid-rod polymer) was used as a host matrix for the electro-polymerization of alkyl thiophene and pyrrole. The first interesting result was the synthesis of a bigger amount of conducting alkyl polymer in the presence of cellulose. With the help of a photo-patterning technique, we were able to form contacts more or less conducting on the substrate. We have also shown that the conducting polymer grows beyond the electrode area until distances never described up to now in the literature. A preferential orientation of the conducting polymer chains along the LB dipping direction of the cellulose has been observed in some cases. Even for the films without molecular orientation, we have systematically observed a microscopic or macroscopic anisotropy. This phenomenon appears as domains concentrated in conducting polymers with anisotropic shapes oriented along the dipping direction. Finally, we have noticed that cellulose doesn't change the conductivity and the electrochromic properties of the conducting polymer. Beyond the keeping of these intrinsic properties, the matrix allows to stabilize the film when it is in contact with an organic solvent. (author)

Abstract (French)

Ce travail de these a ete consacre a la realisation et a la caracterisation de materiaux mixtes organiques en vue de l'elaboration de films ultraminces organises possedant a la fois une conductivite elevee et de bonnes proprietes mecaniques. Dans cette optique, le film de Langmuir-Blodgett (LB) d'une cellulose (colonnaire) alkylee et reticulable a ete utilise comme milieu de polymerisation electrochimique de derives alkyles du thiophene et du pyrrole. Le premier phenomene mis en evidence par cette etude a ete la formation d'une plus grande quantite de polymere conducteur alkyle en presence de cellulose. Associe a une technique de photolitographie, ce phenomene a permis, a l'echelle du micron, de former des plots plus ou moins conducteurs a la surface d'un substrat. Nous avons egalement montre que, grace a la matrice cellulose, le polymere conducteur se developpe au dela de la surface de l'electrode jusqu'a des distances encore jamais decrites dans la litterature. Pour certains films mixtes, une orientation preferentielle des chaines du polymere conducteur selon la direction de transfert de la cellulose a ete observee. Dans tous les cas, meme en l'absence d'une orientation a l'echelle moleculaire, nous avons constate l'apparition d'une anisotropie a l'echelle microscopique ou macroscopique, selon l'etat de surface de l'electrode. Ce phenomene se manifeste par l'obtention de domaines concentres en polymere conducteur ayant des formes anisotropes orientees selon la direction de transfert de la cellulose. Enfin, nous avons constate que la cellulose n'altere pas les proprietes d'electrochromisme et de conduction du polymere conducteur. Le role de la matrice va meme au dela de la conservation de ces proprietes intrinseques en permettant la stabilisation du film forme lorsque celui-ci est au contact d'un solvant organique. (auteur)

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Additional details

Additional titles

Original title (French)
Realisation et caracterisation d'un materiau mixte en films ultraminces a base de cellulose et de polymeres conducteurs

Publishing Information

Imprint Pagination
242 p.
Report number
FRCEA-TH--7908

Optional Information

Notes
209 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/