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  •  Elschner , Andreas
     
     
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    Auteur : 
    Elschner , Andreas
    Titre : 
    Pedot : Principles and applications of an intrinsically conductive polymer , Andreas Elschner, Stephan Kirchmeyer, wilfried l Övenich [et al.]
    Editeur : 
    Boca Raton, FL , CRC Press London -- cop. 2011
    Description : 
    1 vol. (XXI-355 p.) : ill. ; 25 cm
    ISBN: 
    978-1-4200-6911-2 , rel.
    Notes : 
    Références bibliogr. en fin de chapitres. Index
    Offers the chemical, physical, and technical information about the developed electrically conductive polymer, Poly (3,4-ethylenedioxythiophene), otherwise known as PEDOT. This book discusses basic knowledge and explores technical applications. A handbook and a guide, this resource provides the full chemical, physical, and technical information about the most forwardly developed electrically conductive polymer, Poly (3,4-ethylenedioxythiophene), otherwise known as PEDOT. Discussing basic knowledge and exploring technical applications, the book is based on information generated by universities and academic research, as well as by industrial scientists, giving the full picture of the experimental and the practical. While there is information available in handbooks on polythiophene chemistry and physics, under which PEDOT falls, until now there has been no book focusing exclusively on this important conducting polymer.
    Contient : 
    The Discovery and Development of Conducting Polymers. Conductive Polymers versus Metals and Insulators. Polythiophenes: A Chance for Maximum Conductivity? A Short History of the PEDOT Invention. The Synthesis of EDOT Monomer, and Its Physical and Chemical Properties. From EDOT to PEDOT: Oxidative Polymerization and Other Routes. Counterions for PEDOT. The In Situ Polymerization of EDOT to PEDOT. PEDOT: PSS. Applications. Technical Use and Commercial Aspects. EDOT and PEDOT Derivatives with Covalently Attached Side Groups. XDOTs, EDXTs, EDOXs, and 2(5)-X(2)-EDOTs: Ring Size Variations, Heteroanalogs, and Derivatives of EDOT with Substituents at the Thiophene Ring. The Electrochemical Behavior of EDOT and PEDOT.
    Sujet : 
    Conducting polymers
    Polythiophènes
    Conducteurs organiques
    Polyéthylène
    Polythiophenes
    Polyethylene
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