A high-performance supercapacitor of vertically-oriented few-layered graphene with high-density defectsElectronic supplementary information (ESI) available. See DOI: 10.1039/c4nr07284g
Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited its practical application. Here we report a way to simultaneously realize the 3D structure and good wettability in vertically-oriented few-l...
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Format | Journal Article |
Language | English |
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12.02.2015
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Abstract | Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited its practical application. Here we report a way to simultaneously realize the 3D structure and good wettability in vertically-oriented few-layered graphene (VFG) grown by plasma-enhanced chemical vapor deposition. Based on scanning and transmission electron microscopic, Raman spectroscopic, contact angle (CA) and electrochemical analyses, a mechanism to explain the improved performance of VFG-based supercapacitors by defect-stimulated increases in wettability is proposed. The CA of our VFG samples notably reduces from 131° to 73° as the content of surface defects increases, which confirms that the wettability of VFG is markedly improved with an increased density of surface defects. Electrochemical results indicate that the VFG samples with a high density of defects exhibit high specific capacities of up to 704 μF cm
−2
and a good cycling stability with about 91.2% capacitance retention after 3000 cycles. The excellent supercapacitor performance of the VFG samples with a high density of defects makes them attractive candidates for ultrathin high-performance supercapacitor electrodes.
A correlation exists between the degree of defects, wettability and supercapacitor properties of VFG grown by PECVD. |
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AbstractList | Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited its practical application. Here we report a way to simultaneously realize the 3D structure and good wettability in vertically-oriented few-layered graphene (VFG) grown by plasma-enhanced chemical vapor deposition. Based on scanning and transmission electron microscopic, Raman spectroscopic, contact angle (CA) and electrochemical analyses, a mechanism to explain the improved performance of VFG-based supercapacitors by defect-stimulated increases in wettability is proposed. The CA of our VFG samples notably reduces from 131° to 73° as the content of surface defects increases, which confirms that the wettability of VFG is markedly improved with an increased density of surface defects. Electrochemical results indicate that the VFG samples with a high density of defects exhibit high specific capacities of up to 704 μF cm
−2
and a good cycling stability with about 91.2% capacitance retention after 3000 cycles. The excellent supercapacitor performance of the VFG samples with a high density of defects makes them attractive candidates for ultrathin high-performance supercapacitor electrodes.
A correlation exists between the degree of defects, wettability and supercapacitor properties of VFG grown by PECVD. |
Author | Qi, Jun Lei Fei, Wei-Dong Wang, Xu Lin, Jing Huang Zhang, Fu Feng, Ji Cai |
AuthorAffiliation | Harbin Institute of Technology State Key Laboratory of Advanced Welding and Joining |
AuthorAffiliation_xml | – name: State Key Laboratory of Advanced Welding and Joining – name: Harbin Institute of Technology |
Author_xml | – sequence: 1 givenname: Jun Lei surname: Qi fullname: Qi, Jun Lei – sequence: 2 givenname: Xu surname: Wang fullname: Wang, Xu – sequence: 3 givenname: Jing Huang surname: Lin fullname: Lin, Jing Huang – sequence: 4 givenname: Fu surname: Zhang fullname: Zhang, Fu – sequence: 5 givenname: Ji Cai surname: Feng fullname: Feng, Ji Cai – sequence: 6 givenname: Wei-Dong surname: Fei fullname: Fei, Wei-Dong |
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Snippet | Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited... |
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Title | A high-performance supercapacitor of vertically-oriented few-layered graphene with high-density defectsElectronic supplementary information (ESI) available. See DOI: 10.1039/c4nr07284g |
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