A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode
We report a simple approach to prepare the nitrogen-modified few-layer graphene (FLG) directly from graphite flakes. With the aid of melamine, graphite flakes can be directly ultrasonicated into FLG in acetone. The subsequent annealing process further transforms the melamine absorbed on the surface...
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sg-ntu-dr.10356-1072032021-01-14T08:20:05Z A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode Xiao, Ni Lau, Damien Shi, Wenhui Zhu, Jixin Dong, Xiaochen Hng, Huey Hoon Yan, Qingyu School of Materials Science and Engineering TUM CREATE Centre for Electromobility Energy Research Institute @ NTU (ERI@N) We report a simple approach to prepare the nitrogen-modified few-layer graphene (FLG) directly from graphite flakes. With the aid of melamine, graphite flakes can be directly ultrasonicated into FLG in acetone. The subsequent annealing process further transforms the melamine absorbed on the surface of graphene into melon (C6N9H3)x, which is one type of condensation product of melamine, and simultaneously dopes the graphene with nitrogen. When tested as a supercapacitor electrode, the nitrogen-modified FLG shows a much higher specific capacitance (e.g., 227 F/g at 1A/g) than that of reduced graphene oxide (rGO) (e.g., 133 F/g at 1A/g). 2013-11-15T07:15:29Z 2019-12-06T22:26:37Z 2013-11-15T07:15:29Z 2019-12-06T22:26:37Z 2013 2013 Journal Article Xiao, N., Lau, D., Shi, W., Zhu, J., Dong, X., Hng, H. H., et al. (2013). A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode. Carbon, 57,184-190. 0008-6223 https://hdl.handle.net/10356/107203 http://hdl.handle.net/10220/17717 10.1016/j.carbon.2013.01.062 en Carbon |
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We report a simple approach to prepare the nitrogen-modified few-layer graphene (FLG) directly from graphite flakes. With the aid of melamine, graphite flakes can be directly ultrasonicated into FLG in acetone. The subsequent annealing process further transforms the melamine absorbed on the surface of graphene into melon (C6N9H3)x, which is one type of condensation product of melamine, and simultaneously dopes the graphene with nitrogen. When tested as a supercapacitor electrode, the nitrogen-modified FLG shows a much higher specific capacitance (e.g., 227 F/g at 1A/g) than that of reduced graphene oxide (rGO) (e.g., 133 F/g at 1A/g). |
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School of Materials Science and Engineering |
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School of Materials Science and Engineering Xiao, Ni Lau, Damien Shi, Wenhui Zhu, Jixin Dong, Xiaochen Hng, Huey Hoon Yan, Qingyu |
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Article |
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Xiao, Ni Lau, Damien Shi, Wenhui Zhu, Jixin Dong, Xiaochen Hng, Huey Hoon Yan, Qingyu |
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Xiao, Ni Lau, Damien Shi, Wenhui Zhu, Jixin Dong, Xiaochen Hng, Huey Hoon Yan, Qingyu A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
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Xiao, Ni |
title |
A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
title_short |
A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
title_full |
A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
title_fullStr |
A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
title_full_unstemmed |
A simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
title_sort |
simple process to prepare nitrogen-modified few-layer graphene for a supercapacitor electrode |
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2013 |
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https://hdl.handle.net/10356/107203 http://hdl.handle.net/10220/17717 |
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