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Two-dimensional nanosheets of tungsten vanadate (WV2O7) obtained by assembling nanorods on graphene as a supercapacitor electrode

Authors
Lee, IlbokJeong, Gyoung HwaLim, JaewoongKim, Sang-WookYoon, Songhun
Issue Date
Aug-2018
Publisher
ELSEVIER SCIENCE SA
Keywords
Tungsten vanadate; Nanostructures; Electrochemistry; Graphene; Graphite; Supercapacitor
Citation
JOURNAL OF ALLOYS AND COMPOUNDS, v.758, pp 99 - 107
Pages
9
Journal Title
JOURNAL OF ALLOYS AND COMPOUNDS
Volume
758
Start Page
99
End Page
107
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/1875
DOI
10.1016/j.jallcom.2018.05.059
ISSN
0925-8388
1873-4669
Abstract
By cumulative assembly of tungsten vanadate (WV2O7) nanorods, novel two-dimensional (2D) nanosheets of interwoven tungsten vanadate were hydrothermally formed on graphene. When as-prepared material was applied into a supercapacitor electrode using H2SO4 electrolyte, it was clarified that charging process was based on the pseudocapacitive reaction and the average specific capacitance was 346.4Fg(-1) with a high differential capacitance of 1211.4Fg(-1) at -0.1 V. Furthermore, an outstanding improvement of charge retention during cyclic voltammetry was observed (68% @ scan rate 100mV s(-1)) while electrode loading was as high as 5 mg cm(-2), which was practically significant since the electrode fabrication was based on conventional slurry mixing process. From Ragone plot, it was revealed that the maximum energy density was as large as 27.8Wh kg(-1) at 950Wkg(-1), and the power density was excellent (23.8 kW kg(-)1 at 16.2 Wh kg(-1)). The high energy and power capability were attributed to the optimized 2D assembly of WV2O7 nanorods with the easy availability of the electrolyte on the highconductivity graphene layer. (C) 2018 Elsevier B.V. All rights reserved.
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창의ICT공과대학 (융합공학부)
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