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Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass

Kirsi Yliniemi, David Wragg, Benjamin P Wilson, H. Neil McMurray, David Worsley Orcid Logo, Patrik Schmuki, Kyösti Kontturi, Hamilton McMurray

Electrochimica Acta, Volume: 88, Pages: 278 - 286

Swansea University Authors: David Worsley Orcid Logo, Hamilton McMurray

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Published in: Electrochimica Acta
ISSN: 0013-4686
Published: 2013
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URI: https://cronfa.swan.ac.uk/Record/cronfa15704
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first_indexed 2013-11-07T03:00:14Z
last_indexed 2018-02-09T04:47:44Z
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spelling 2016-06-09T16:19:14.2786420 v2 15704 2013-09-03 Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass c426b1c1b0123d7057c1b969083cea69 0000-0002-9956-6228 David Worsley David Worsley true false 56fc1b17ffc3bdf6039dc05c6eba7f2a Hamilton McMurray Hamilton McMurray true false 2013-09-03 MTLS Journal Article Electrochimica Acta 88 278 286 0013-4686 31 12 2013 2013-12-31 10.1016/j.electacta.2012.10.089 This paper is the initial result of one-year collaboration with Aalto University and the SPECIFIC IKC (EPSRC EPI019278 £5.01m) aimed at developing new routes to produce catalytically active surfaces on fluorine doped tin oxide (transparent conducting) glass. We have developed a method for electrodepositing a lead scaffold particle network that can act as a host for a shell coating of platinum which enable less of the precious metal use whilst it maintains catalytic activity. This kind of electrode can be used in a range of devices including the counter electrode of a dye sensitised solar cell (IF 4.08 citations 7) COLLEGE NANME Materials Science and Engineering COLLEGE CODE MTLS Swansea University 2016-06-09T16:19:14.2786420 2013-09-03T14:08:35.2409743 Faculty of Science and Engineering School of Engineering and Applied Sciences - Uncategorised Kirsi Yliniemi 1 David Wragg 2 Benjamin P Wilson 3 H. Neil McMurray 4 David Worsley 0000-0002-9956-6228 5 Patrik Schmuki 6 Kyösti Kontturi 7 Hamilton McMurray 8
title Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
spellingShingle Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
David Worsley
Hamilton McMurray
title_short Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
title_full Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
title_fullStr Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
title_full_unstemmed Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
title_sort Formation of Pt/Pb nanoparticles by electrodeposition and redox replacement cycles on fluorine doped tin oxide glass
author_id_str_mv c426b1c1b0123d7057c1b969083cea69
56fc1b17ffc3bdf6039dc05c6eba7f2a
author_id_fullname_str_mv c426b1c1b0123d7057c1b969083cea69_***_David Worsley
56fc1b17ffc3bdf6039dc05c6eba7f2a_***_Hamilton McMurray
author David Worsley
Hamilton McMurray
author2 Kirsi Yliniemi
David Wragg
Benjamin P Wilson
H. Neil McMurray
David Worsley
Patrik Schmuki
Kyösti Kontturi
Hamilton McMurray
format Journal article
container_title Electrochimica Acta
container_volume 88
container_start_page 278
publishDate 2013
institution Swansea University
issn 0013-4686
doi_str_mv 10.1016/j.electacta.2012.10.089
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Engineering and Applied Sciences - Uncategorised{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Uncategorised
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published_date 2013-12-31T03:17:51Z
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