Journal article 1385 views
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 ,
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 , Thierry Maffeis
Full text not available from this repository: check for access using links below.
DOI (Published version): 10.1016/j.apsusc.2014.09.078
Abstract
Surface state modulation through wet chemical treatment as a route to controlling the electrical properties of ZnO nanowire arrays investigated with XPS
Published in: | Applied Surface Science |
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2014
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URI: | https://cronfa.swan.ac.uk/Record/cronfa18717 |
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2014-10-15T01:30:04Z |
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2018-02-09T04:53:36Z |
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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 Journal Article Applied Surface Science 320 664 669 1 10 2014 2014-10-01 10.1016/j.apsusc.2014.09.078 COLLEGE NANME COLLEGE CODE 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 |
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d547bad707e12f5a9f12d4fcbeea87ed 992eb4cb18b61c0cd3da6e0215ac787c |
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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 |
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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 |
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|
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facultyofscienceandengineering |
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Faculty of Science and Engineering |
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facultyofscienceandengineering |
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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 |
2014-10-01T12:37:54Z |
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11.048453 |