In situ growth of Si nanowires on graphene sheets for Li-ion storage
Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS) process, which showed high specific capacities and charge–discharge cycling stability as anode materials for Li-ion storage. The enhancement on capacity and cycling stability of the Si/graphene comp...
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sg-ntu-dr.10356-989092021-01-08T08:08:05Z In situ growth of Si nanowires on graphene sheets for Li-ion storage Lu, Ziyang Zhu, Jixin Sim, Daohao Shi, Wenhui Tay, Yee Yan Ma, Jan Hng, Huey Hoon Yan, Qingyu School of Materials Science & Engineering TUM CREATE Centre for Electromobility Energy Research Institute @ NTU (ERI@N) Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS) process, which showed high specific capacities and charge–discharge cycling stability as anode materials for Li-ion storage. The enhancement on capacity and cycling stability of the Si/graphene composite nanostructures was attributed to the presence of graphene papers in the hybrid samples that served as a highly conductive framework and absorption of volume changes of Si nanowires during the lithiation/delithiation process. This Si/graphene electrodes maintained reversible capacities of 1400 mAh g−1 for the 30th cycle at a current density of 420 mA g−1, which is much better as compared to that of pure Si nanowires. 2013-07-01T04:13:45Z 2019-12-06T20:01:02Z 2013-07-01T04:13:45Z 2019-12-06T20:01:02Z 2012 2012 Journal Article Lu, Z., Zhu, J., Sim, D., Shi, W., Tay, Y. Y., Ma, J., et al. (2012). In situ growth of Si nanowires on graphene sheets for Li-ion storage. Electrochimica Acta, 74, 176-181. 0013-4686 https://hdl.handle.net/10356/98909 http://hdl.handle.net/10220/10839 10.1016/j.electacta.2012.04.046 en Electrochimica acta © 2012 Elsevier Ltd. |
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Si nanowires in graphene papers were successfully prepared by supercritical fluid–liquid–solid (SFLS) process, which showed high specific capacities and charge–discharge cycling stability as anode materials for Li-ion storage. The enhancement on capacity and cycling stability of the Si/graphene composite nanostructures was attributed to the presence of graphene papers in the hybrid samples that served as a highly conductive framework and absorption of volume changes of Si nanowires during the lithiation/delithiation process. This Si/graphene electrodes maintained reversible capacities of 1400 mAh g−1 for the 30th cycle at a current density of 420 mA g−1, which is much better as compared to that of pure Si nanowires. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Lu, Ziyang Zhu, Jixin Sim, Daohao Shi, Wenhui Tay, Yee Yan Ma, Jan Hng, Huey Hoon Yan, Qingyu |
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Lu, Ziyang Zhu, Jixin Sim, Daohao Shi, Wenhui Tay, Yee Yan Ma, Jan Hng, Huey Hoon Yan, Qingyu |
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Lu, Ziyang Zhu, Jixin Sim, Daohao Shi, Wenhui Tay, Yee Yan Ma, Jan Hng, Huey Hoon Yan, Qingyu In situ growth of Si nanowires on graphene sheets for Li-ion storage |
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Lu, Ziyang |
title |
In situ growth of Si nanowires on graphene sheets for Li-ion storage |
title_short |
In situ growth of Si nanowires on graphene sheets for Li-ion storage |
title_full |
In situ growth of Si nanowires on graphene sheets for Li-ion storage |
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In situ growth of Si nanowires on graphene sheets for Li-ion storage |
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In situ growth of Si nanowires on graphene sheets for Li-ion storage |
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in situ growth of si nanowires on graphene sheets for li-ion storage |
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2013 |
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https://hdl.handle.net/10356/98909 http://hdl.handle.net/10220/10839 |
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