Germanium nanowires-based carbon composite as anodes for lithium-ion batteries
Lithium-ion batteries have been actively researched in recent years due to it being one of the most promising energy storage systems. Herein, we report a novel approach where germanium nanowires (Ge NW) are grown in gold-seeded porous carbon via the solution–liquid–solid mechanism, and the correspon...
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sg-ntu-dr.10356-1065132021-01-08T07:37:54Z Germanium nanowires-based carbon composite as anodes for lithium-ion batteries Yan, Qingyu Tan, Li Ping Lu, Ziyang Tan, Huiteng Zhu, Jixin Rui, Xianhong Hng, Huey Hoon School of Civil and Environmental Engineering School of Materials Science & Engineering Energy Research Institute @ NTU (ERI@N) Lithium-ion batteries have been actively researched in recent years due to it being one of the most promising energy storage systems. Herein, we report a novel approach where germanium nanowires (Ge NW) are grown in gold-seeded porous carbon via the solution–liquid–solid mechanism, and the corresponding improvement observed in terms of the specific capacity of this porous carbon–germanium nanowires (PC–Ge NW) composite anode. At a current density of 160 mAg−1 and voltage window of 0.001–1.5 V, a specific capacity of 789 mAhg−1 during the 50th cycle for PC–Ge NW is achieved as compared to 624 mAhg−1 during the 50th cycle for pure Ge NW. Even though the content of the Ge is only 53.5 weight percent in the PC–Ge NW composite, it yields a better stability and higher specific capacity, indicating a synergistic effect between porous carbon and Ge nanowires. There is also potential cost savings since the use of a lower amount of Ge can bring about good cycling properties. 2013-07-15T02:34:31Z 2019-12-06T22:13:19Z 2013-07-15T02:34:31Z 2019-12-06T22:13:19Z 2012 2012 Journal Article Tan, L. P., Lu, Z., Tan, H. T., Zhu, J., Rui, X., Yan, Q., & Hng, H. H. (2012). Germanium nanowires-based carbon composite as anodes for lithium-ion batteries. Journal of Power Sources, 206, 253-258. 0378-7753 https://hdl.handle.net/10356/106513 http://hdl.handle.net/10220/11364 10.1016/j.jpowsour.2011.12.064 en Journal of power sources © 2012 Elsevier B.V. |
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Lithium-ion batteries have been actively researched in recent years due to it being one of the most promising energy storage systems. Herein, we report a novel approach where germanium nanowires (Ge NW) are grown in gold-seeded porous carbon via the solution–liquid–solid mechanism, and the corresponding improvement observed in terms of the specific capacity of this porous carbon–germanium nanowires (PC–Ge NW) composite anode. At a current density of 160 mAg−1 and voltage window of 0.001–1.5 V, a specific capacity of 789 mAhg−1 during the 50th cycle for PC–Ge NW is achieved as compared to 624 mAhg−1 during the 50th cycle for pure Ge NW. Even though the content of the Ge is only 53.5 weight percent in the PC–Ge NW composite, it yields a better stability and higher specific capacity, indicating a synergistic effect between porous carbon and Ge nanowires. There is also potential cost savings since the use of a lower amount of Ge can bring about good cycling properties. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Yan, Qingyu Tan, Li Ping Lu, Ziyang Tan, Huiteng Zhu, Jixin Rui, Xianhong Hng, Huey Hoon |
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Yan, Qingyu Tan, Li Ping Lu, Ziyang Tan, Huiteng Zhu, Jixin Rui, Xianhong Hng, Huey Hoon |
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Yan, Qingyu Tan, Li Ping Lu, Ziyang Tan, Huiteng Zhu, Jixin Rui, Xianhong Hng, Huey Hoon Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
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Yan, Qingyu |
title |
Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
title_short |
Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
title_full |
Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
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Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
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Germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
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germanium nanowires-based carbon composite as anodes for lithium-ion batteries |
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2013 |
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https://hdl.handle.net/10356/106513 http://hdl.handle.net/10220/11364 |
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