Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength
Electrically colourable (“electrochromic”) windows, hitherto confined to small areas, have recently been much expanded in area in new aircraft windows. Reviews indicate that to extend such high-tech applications to more everyday uses requires enhanced robustness, as in a new Prussian-Blue/polymer(Li...
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sg-ntu-dr.10356-966062020-06-01T10:01:56Z Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength Soutar, Andrew M. Rosseinsky, David R. Freeman, William Zhang, Xiao How, Xuanxuan Jiang, Hongjin Zeng, Xianting Miao, Xigong School of Materials Science & Engineering A*STAR SIMTech Electrically colourable (“electrochromic”) windows, hitherto confined to small areas, have recently been much expanded in area in new aircraft windows. Reviews indicate that to extend such high-tech applications to more everyday uses requires enhanced robustness, as in a new Prussian-Blue/polymer(Li+)/WO3 electrochromic device reported here. The new polymer electrolyte is UV-curable within the cell, obviating the need and risk of thermal polymerization while conferring mechanical robustness. Prussian Blue, (in reduced form the clear Prussian white “PW”, that is turned blue on electro-oxidation) and WO3 (showing a complementary clear-to-blue on electron uptake) are known to reliably undergo these established colourations as electrochromic anode and cathode, respectively. 2013-06-13T06:06:31Z 2019-12-06T19:32:57Z 2013-06-13T06:06:31Z 2019-12-06T19:32:57Z 2012 2012 Journal Article Soutar, A. M., Rosseinsky, D. R., Freeman, W., Zhang, X., How, X., Jiang, H., et al. (2012). Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength. Solar Energy Materials and Solar Cells, 100, 268-270. 0927-0248 https://hdl.handle.net/10356/96606 http://hdl.handle.net/10220/10335 10.1016/j.solmat.2012.01.034 en Solar energy materials and solar cells © 2012 Elsevier B.V. |
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Electrically colourable (“electrochromic”) windows, hitherto confined to small areas, have recently been much expanded in area in new aircraft windows. Reviews indicate that to extend such high-tech applications to more everyday uses requires enhanced robustness, as in a new Prussian-Blue/polymer(Li+)/WO3 electrochromic device reported here. The new polymer electrolyte is UV-curable within the cell, obviating the need and risk of thermal polymerization while conferring mechanical robustness. Prussian Blue, (in reduced form the clear Prussian white “PW”, that is turned blue on electro-oxidation) and WO3 (showing a complementary clear-to-blue on electron uptake) are known to reliably undergo these established colourations as electrochromic anode and cathode, respectively. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Soutar, Andrew M. Rosseinsky, David R. Freeman, William Zhang, Xiao How, Xuanxuan Jiang, Hongjin Zeng, Xianting Miao, Xigong |
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Article |
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Soutar, Andrew M. Rosseinsky, David R. Freeman, William Zhang, Xiao How, Xuanxuan Jiang, Hongjin Zeng, Xianting Miao, Xigong |
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Soutar, Andrew M. Rosseinsky, David R. Freeman, William Zhang, Xiao How, Xuanxuan Jiang, Hongjin Zeng, Xianting Miao, Xigong Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
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Soutar, Andrew M. |
title |
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
title_short |
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
title_full |
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
title_fullStr |
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
title_full_unstemmed |
Electrochromic cell with UV-curable electrolyte polymer for cohesion and strength |
title_sort |
electrochromic cell with uv-curable electrolyte polymer for cohesion and strength |
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2013 |
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https://hdl.handle.net/10356/96606 http://hdl.handle.net/10220/10335 |
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