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Synthèse et étude électrochimique de polymères organiques conducteurs dérivés d’arylène-cyano-vinylènes.

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dc.contributor.author Mosbah ép Belaïdi, Salima
dc.contributor.author Bencharif, Leïla
dc.date.accessioned 2022-05-25T08:22:35Z
dc.date.available 2022-05-25T08:22:35Z
dc.date.issued 2017-11-16
dc.identifier.uri http://depot.umc.edu.dz/handle/123456789/8124
dc.description.abstract The anodic oxidation of some monomers consisting of electron-donor units and electro-acceptor units in a 0.2M / CH2Cl2 Bu4NPF6 organic medium on a platinum electrode or on an ITO electrode is followed by cyclic voltammetry and chronoculometry. Two series of monomers are studied, one of formula Ar1-cyanovinylene-Ar2 and the other of formula Ar1-cyanovinylene-Ar2-cyanovinyleneAr1 with Ar2 = phenyl and Ar1 = phenyl, 3-methylthienyl, fluorenyl, furyl, 3, 4- ethylenedioxythienyl, phenoxyphenyl. The majority of the monomers polymerize and those with Ar1 = thienyl or EDOTyl also possess a reversible and stable n-doping. Dicyaned polymers which must have greater regioregularity have a smaller gap than single-chain polymers, resulting from stronger interactions between donor and acceptor motifs along the conjugated chain. All polymers are characterized by IR, UV-Visible and fluorescence. The theoretical calculations of charge densities of the radical-cations have shown that the electropolymerization active sites are those expected.
dc.language.iso fr
dc.publisher Université Frères Mentouri - Constantine 1
dc.subject Polymères organiques conducteurs
dc.subject oxydation anodique
dc.subject voltampérométrie cyclique
dc.subject arylène-cyanovinylènes
dc.subject gaps optique
dc.subject électrochimique et théorique
dc.subject fluorescence
dc.subject Conductive organic polymers
dc.subject anodic oxidation
dc.subject cyclic voltammetry
dc.subject arylene cyanovinylenes
dc.subject optical
dc.subject electrochemical and theoretical gaps
dc.subject البولیمیرات العضویة الناقلة
dc.subject الأكسدة الأنودیة
dc.subject الفولتمري
dc.title Synthèse et étude électrochimique de polymères organiques conducteurs dérivés d’arylène-cyano-vinylènes.
dc.type Thesis


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