Published October 6, 2016 | Version v1
Report Restricted

Study of growth mechanism of conducting polymers by pulse radiolysis

Description

Today conductive polymers have many applications in several devices. For these reasons they have received much attention in recent years. Despite intensive research, the mechanism of conducting polymers growth is still poorly understood and the methods of polymerization are limited to two principal ways: chemical and electrochemical synthesis. On the other hand, the complex properties of polymers can be controlled only if a good knowledge of polymerization process is acquired. In this case, it is possible to control the process during the synthesis (functionalization, hydrophilicity, chain length, doping level), and consequently to improve the conductive properties of the synthesized polymers. Water radiolysis represents an easy and efficient method of synthesis comparing to chemical and electrochemical polymerization routes. It enables the polymerization under soft conditions: ambient temperature and pressure, without any external dopant. Among all conductive polymers, poly(3, 4-ethylenedioxy-thiophene) (PEDOT, a derivative of poly-thiophene) and poly-Pyrrole (PPy) have gained some large scale applications for their chemical and physical proprieties. The aim of the present work was the synthesis of PEDOT and PPy in aqueous solution and the study of their growth mechanism by pulsed radiolysis. Thanks to the electron accelerator ELYSE, the use of pulsed radiolysis coupled with time-resolved absorption spectroscopy allowed to study the kinetics of polymerization. The first transient species involved in the mechanism were identified by time resolved spectroscopy and the rate constants were determined. First, the reaction of hydroxyl radicals onto EDOT and Py monomers was studied, as well as the corresponding radiation induced polymerization. Then, the study was transposed to others oxidizing radicals such as CO3.-, N3. and SO4.- at different pHs. This approach allowed to check and to highlight the influence of oxidizing species onto the first transient species produced by monomers oxidation (radical cation, adduct or neutral radical) and onto the resulting morphology and properties of the radio-synthesized polymers. Finally, the electron beam was originally used as a simple electron irradiator in order to in situ synthesize PEDOT and PPy. (author)

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Additional titles

Original title (English)
Etude du mecanisme de croissance de polymeres conducteurs par radiolyse impulsionnelle

Publishing Information

Imprint Pagination
234 p.
Report number
FRNC-TH--10014

Optional Information

Notes
179 refs.; Available from the INIS Liaison Officer for France, see the INIS website for current contact and E-mail addresses; Also available from Les Bibliotheques, Universite de Paris-Saclay, Espace Technologique, Immeuble Discovery Route de l'Orme aux Merisiers RD 128, 91190 Saint-Aubin, (France)