Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots
Graphene quantum dots prove useful in lithium-ion batteries. This work introduces graphene quantum dots for the first time as surface coating material for lithium-ion battery electrodes, exemplified by copper oxide nanowires. The high-rate capability, initial columbic efficiency, and cycle life are...
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sg-ntu-dr.10356-798582020-09-26T22:10:04Z Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots Chao, Dongliang Zhu, Changrong Sun, Jing Bacho, Ignacio Mínguez Fan, Zhanxi Ng, Chin Fan Xia, Xinhui Huang, Hui Zhang, Hua Shen, Ze Xiang Ding, Guqiao Fan, Hong Jin School of Materials Science & Engineering School of Physical and Mathematical Sciences A*STAR SIMTech Copper oxide Core–shell Graphene quantum dots Lithium-ion battery Nanowires Graphene quantum dots prove useful in lithium-ion batteries. This work introduces graphene quantum dots for the first time as surface coating material for lithium-ion battery electrodes, exemplified by copper oxide nanowires. The high-rate capability, initial columbic efficiency, and cycle life are improved by the surface coating. ASTAR (Agency for Sci., Tech. and Research, S’pore) Accepted version 2016-04-08T02:38:27Z 2019-12-06T13:35:30Z 2016-04-08T02:38:27Z 2019-12-06T13:35:30Z 2014 Journal Article Zhu, C., Chao, D., Sun, J., Bacho, I. M., Fan, Z., Ng, C. F., et al. (2015). Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots. Advanced Materials Interfaces, 2(2), 1400499-. 2196-7350 https://hdl.handle.net/10356/79858 http://hdl.handle.net/10220/40383 10.1002/admi.201400499 en Advanced Materials Interfaces © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. This is the author created version of a work that has been peer reviewed and accepted for publication by Advanced Materials Interfaces, WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: [http://dx.doi.org/10.1002/admi.201400499]. 25 p. application/pdf |
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Copper oxide Core–shell Graphene quantum dots Lithium-ion battery Nanowires |
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Copper oxide Core–shell Graphene quantum dots Lithium-ion battery Nanowires Chao, Dongliang Zhu, Changrong Sun, Jing Bacho, Ignacio Mínguez Fan, Zhanxi Ng, Chin Fan Xia, Xinhui Huang, Hui Zhang, Hua Shen, Ze Xiang Ding, Guqiao Fan, Hong Jin Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
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Graphene quantum dots prove useful in lithium-ion batteries. This work introduces graphene quantum dots for the first time as surface coating material for lithium-ion battery electrodes, exemplified by copper oxide nanowires. The high-rate capability, initial columbic efficiency, and cycle life are improved by the surface coating. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Chao, Dongliang Zhu, Changrong Sun, Jing Bacho, Ignacio Mínguez Fan, Zhanxi Ng, Chin Fan Xia, Xinhui Huang, Hui Zhang, Hua Shen, Ze Xiang Ding, Guqiao Fan, Hong Jin |
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Article |
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Chao, Dongliang Zhu, Changrong Sun, Jing Bacho, Ignacio Mínguez Fan, Zhanxi Ng, Chin Fan Xia, Xinhui Huang, Hui Zhang, Hua Shen, Ze Xiang Ding, Guqiao Fan, Hong Jin |
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Chao, Dongliang |
title |
Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
title_short |
Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
title_full |
Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
title_fullStr |
Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
title_full_unstemmed |
Enhanced Lithium Storage Performance of CuO Nanowires by Coating of Graphene Quantum Dots |
title_sort |
enhanced lithium storage performance of cuo nanowires by coating of graphene quantum dots |
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2016 |
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https://hdl.handle.net/10356/79858 http://hdl.handle.net/10220/40383 |
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1681056407387897856 |