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Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting

Shion Seng Chang, Wing C Tsoi, Anthony Higgins Orcid Logo, Ji-Seon Kim, Jessica M Winfield, David T James, Wing Chung Tsoi Orcid Logo

Advanced Functional Materials, Volume: 20, Issue: 18, Pages: 3045 - 3054

Swansea University Authors: Anthony Higgins Orcid Logo, Wing Chung Tsoi Orcid Logo

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DOI (Published version): 10.1002/adfm.201000830

Published in: Advanced Functional Materials
ISSN: 1616-301X
Published: 2010
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URI: https://cronfa.swan.ac.uk/Record/cronfa5783
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first_indexed 2013-07-23T11:53:43Z
last_indexed 2018-02-09T04:32:33Z
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spelling 2016-08-16T10:41:17.9424212 v2 5783 2013-09-03 Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting 4db715667aa7bdc04e87b3ab696d206a 0000-0003-2804-8164 Anthony Higgins Anthony Higgins true false 7e5f541df6635a9a8e1a579ff2de5d56 0000-0003-3836-5139 Wing Chung Tsoi Wing Chung Tsoi true false 2013-09-03 MEDE Journal Article Advanced Functional Materials 20 18 3045 3054 1616-301X 31 12 2010 2010-12-31 10.1002/adfm.201000830 The project involved a collaboration between Swansea and workers at Imperial College London, Physics department using AFM and polarised Raman spectroscopy, and was led by Dr A. M. Higgins. Molecular orientation is an important determinant of properties such as charge transfer and charge mobility within organic electronic devices. The work explored a novel self-assembly technique for achieving molecular alignment within conjugated polymer nanowires and quantified the degree of molecular alignment that could be achieved as a function of the nanowire width. COLLEGE NANME Biomedical Engineering COLLEGE CODE MEDE Swansea University 2016-08-16T10:41:17.9424212 2013-09-03T06:22:19.0000000 Faculty of Science and Engineering School of Engineering and Applied Sciences - Biomedical Engineering Shion Seng Chang 1 Wing C Tsoi 2 Anthony Higgins 0000-0003-2804-8164 3 Ji-Seon Kim 4 Jessica M Winfield 5 David T James 6 Wing Chung Tsoi 0000-0003-3836-5139 7
title Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
spellingShingle Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
Anthony Higgins
Wing Chung Tsoi
title_short Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
title_full Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
title_fullStr Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
title_full_unstemmed Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
title_sort Self-Assembled, Molecularly Aligned Conjugated Polymer Nanowires via Dewetting
author_id_str_mv 4db715667aa7bdc04e87b3ab696d206a
7e5f541df6635a9a8e1a579ff2de5d56
author_id_fullname_str_mv 4db715667aa7bdc04e87b3ab696d206a_***_Anthony Higgins
7e5f541df6635a9a8e1a579ff2de5d56_***_Wing Chung Tsoi
author Anthony Higgins
Wing Chung Tsoi
author2 Shion Seng Chang
Wing C Tsoi
Anthony Higgins
Ji-Seon Kim
Jessica M Winfield
David T James
Wing Chung Tsoi
format Journal article
container_title Advanced Functional Materials
container_volume 20
container_issue 18
container_start_page 3045
publishDate 2010
institution Swansea University
issn 1616-301X
doi_str_mv 10.1002/adfm.201000830
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 - Biomedical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Biomedical Engineering
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published_date 2010-12-31T03:06:59Z
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