Supercapacitor performance of 3D-graphene/MnO2 foam synthesized via the combination of chemical vapor deposition with hydrothermal method

被引:30
作者
Bai, Xian-Lin [1 ,2 ]
Gao, Yan-Li [2 ]
Gao, Zhao-Yang [2 ]
Ma, Jing-Yao [2 ]
Tong, Xing-Lin [1 ]
Sun, Hai-Bin [2 ]
Wang, Jin An [3 ]
机构
[1] Wuhan Univ Technol, Natl Engn Lab Fiber Opt Sensing Technol, Sch Informat Engn, Wuhan 430074, Peoples R China
[2] Xinyang Normal Univ, Dept Phys & Elect Engn, Key Lab Microelect & Energy Henan Prov, Xinyang 464000, Peoples R China
[3] Inst Politecn Nacl, ESIQIE, Lab Catalisis & Mat, Mexico City 07738, DF, Mexico
基金
中国国家自然科学基金; 国家高技术研究发展计划(863计划);
关键词
GRAPHENE NETWORKS; LARGE-AREA; MNO2; NANOSTRUCTURES; COMPOSITE;
D O I
10.1063/5.0018708
中图分类号
O59 [应用物理学];
学科分类号
摘要
In this paper, in situ synthesis of 3D-graphene/MnO2 foam composite using the combination of chemical vapor deposition and hydrothermal method was reported for producing highly efficient graphene/metal oxide-based hybrid supercapacitors. The in situ conformal growth of 3D-graphene/MnO2 composite exhibited high crystallinity and low contact resistance, thereby improving the charge transport efficiency of the electrolyte. Compared with the previously described MnO2-based counterparts, the porous structure of the 3D conductive graphene foam permitted electrolyte ions to rapidly move around the surface of MnO2. In the supercapacitor, the 3D-graphene/MnO2 composite electrode in the absence of carbon black showed high specific capacitance (333.4 F g(-1) at 0.2A g(-1)) with excellent cycling stability. This technical approach for fabrication of 3D-graphene/MnO2 composite provides a promising means in the production of energy storage electrode materials for designing high performance supercapacitor devices.
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页数:6
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