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Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS

Alex Lord Orcid Logo, Thierry Maffeis Orcid Logo, Martin W. Allen, David Morgan, Philip R. Davies, Daniel R. Jones, Jonathan E. Evans, Nathan A. Smith, Steve P. Wilks

Applied Surface Science, Volume: 320, Pages: 664 - 669

Swansea University Authors: Alex Lord Orcid Logo, Thierry Maffeis Orcid Logo

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DOI (Published version): 10.1016/j.apsusc.2014.09.078

Published in: Applied Surface Science
Published: 2014
URI: https://cronfa.swan.ac.uk/Record/cronfa18717
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first_indexed 2014-10-15T01:30:04Z
last_indexed 2018-02-09T04:53:36Z
id cronfa18717
recordtype SURis
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spelling 2014-10-14T16:03:19.6341301 v2 18717 2014-10-14 Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS d547bad707e12f5a9f12d4fcbeea87ed 0000-0002-6258-2187 Alex Lord Alex Lord true false 992eb4cb18b61c0cd3da6e0215ac787c 0000-0003-2357-0092 Thierry Maffeis Thierry Maffeis true false 2014-10-14 EEN Journal Article Applied Surface Science 320 664 669 1 10 2014 2014-10-01 10.1016/j.apsusc.2014.09.078 COLLEGE NANME Engineering COLLEGE CODE EEN Swansea University 2014-10-14T16:03:19.6341301 2014-10-14T16:03:19.6341301 Faculty of Science and Engineering School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering Alex Lord 0000-0002-6258-2187 1 Thierry Maffeis 0000-0003-2357-0092 2 Martin W. Allen 3 David Morgan 4 Philip R. Davies 5 Daniel R. Jones 6 Jonathan E. Evans 7 Nathan A. Smith 8 Steve P. Wilks 9
title Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
spellingShingle Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
Alex Lord
Thierry Maffeis
title_short Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
title_full Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
title_fullStr Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
title_full_unstemmed Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
title_sort Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
author_id_str_mv d547bad707e12f5a9f12d4fcbeea87ed
992eb4cb18b61c0cd3da6e0215ac787c
author_id_fullname_str_mv d547bad707e12f5a9f12d4fcbeea87ed_***_Alex Lord
992eb4cb18b61c0cd3da6e0215ac787c_***_Thierry Maffeis
author Alex Lord
Thierry Maffeis
author2 Alex Lord
Thierry Maffeis
Martin W. Allen
David Morgan
Philip R. Davies
Daniel R. Jones
Jonathan E. Evans
Nathan A. Smith
Steve P. Wilks
format Journal article
container_title Applied Surface Science
container_volume 320
container_start_page 664
publishDate 2014
institution Swansea University
doi_str_mv 10.1016/j.apsusc.2014.09.078
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 Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering
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published_date 2014-10-01T03:21:58Z
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