In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer

The morphology changes of polypyrrole (PPy) films on polycrystalline platinum, glassy carbon and gold electrodes during synthesis and oxidation-reduction processes have been investigated using in-situ electrochemical AFM. It is found that the morphology of the film at the first stages of synthesis d...

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Main Authors: Suarez, M, Compton, R
Format: Journal article
Language:English
Published: 1999
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author Suarez, M
Compton, R
author_facet Suarez, M
Compton, R
author_sort Suarez, M
collection OXFORD
description The morphology changes of polypyrrole (PPy) films on polycrystalline platinum, glassy carbon and gold electrodes during synthesis and oxidation-reduction processes have been investigated using in-situ electrochemical AFM. It is found that the morphology of the film at the first stages of synthesis depends on the nature of the electrode and it is different from that of the thick film morphology. Remarkable changes in the morphology of PPy films were observed following synthesis suggesting that PPy films have an extraordinary capacity to alter their morphology over time. Upon reduction (undoping) in aqueous solution of NaClO4, a perchlorate-doped PPy undergoes initially rapid swelling and subsequent continuous slow shrinking during the first reduction potential step from 0.2 to -0.8 V, but during subsequent redox potential steps no remarkable changes of volume are observed. In contrast, in an aqueous solution of sodium p-toluenesulfonate, the polymer swells on reduction and shrinks on oxidation during continuous redox potential steps between 0.2 and -0.8 V. © 1999 Elsevier Science S.A.
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spelling oxford-uuid:d93e87db-82cc-439a-b98a-333d63c77c132022-03-27T08:54:27ZIn situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymerJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d93e87db-82cc-439a-b98a-333d63c77c13EnglishSymplectic Elements at Oxford1999Suarez, MCompton, RThe morphology changes of polypyrrole (PPy) films on polycrystalline platinum, glassy carbon and gold electrodes during synthesis and oxidation-reduction processes have been investigated using in-situ electrochemical AFM. It is found that the morphology of the film at the first stages of synthesis depends on the nature of the electrode and it is different from that of the thick film morphology. Remarkable changes in the morphology of PPy films were observed following synthesis suggesting that PPy films have an extraordinary capacity to alter their morphology over time. Upon reduction (undoping) in aqueous solution of NaClO4, a perchlorate-doped PPy undergoes initially rapid swelling and subsequent continuous slow shrinking during the first reduction potential step from 0.2 to -0.8 V, but during subsequent redox potential steps no remarkable changes of volume are observed. In contrast, in an aqueous solution of sodium p-toluenesulfonate, the polymer swells on reduction and shrinks on oxidation during continuous redox potential steps between 0.2 and -0.8 V. © 1999 Elsevier Science S.A.
spellingShingle Suarez, M
Compton, R
In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title_full In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title_fullStr In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title_full_unstemmed In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title_short In situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
title_sort in situ atomic force microscopy study of polypyrrole synthesis and the volume changes induced by oxidation and reduction of the polymer
work_keys_str_mv AT suarezm insituatomicforcemicroscopystudyofpolypyrrolesynthesisandthevolumechangesinducedbyoxidationandreductionofthepolymer
AT comptonr insituatomicforcemicroscopystudyofpolypyrrolesynthesisandthevolumechangesinducedbyoxidationandreductionofthepolymer