MoS2 Nanosheet Arrays Rooted on Hollow rGO Spheres as Bifunctional Hydrogen Evolution Catalyst and Supercapacitor Electrode

被引:0
作者
Shizheng Zheng [1 ]
Lijun Zheng [1 ]
Zhengyou Zhu [1 ]
Jian Chen [1 ]
Jianli Kang [2 ]
Zhulin Huang [3 ]
Dachi Yang [1 ]
机构
[1] Key Laboratory of Photoelectronic Thin Film Devices and Technology of Tianjin, Department of Electronics, College of Electronic Information and Optical Engineering, Nankai University
[2] Key Laboratory of Materials Physics, and Anhui Key Laboratory of Nanomaterials and Nanotechnology, Institute of Solid State Physics, Chinese Academy of Sciences
[3] School of Material Science and Engineering, Tianjin Polytechnic University
关键词
MoS2; Reduced graphene oxide(rGO); Hollow spheres; Hydrogen evolution reaction(HER); Supercapacitor;
D O I
暂无
中图分类号
TB383.1 []; O643.36 [催化剂]; TM53 [电容器];
学科分类号
070205 ; 080501 ; 080801 ; 081705 ; 1406 ;
摘要
MoShas attracted attention as a promising hydrogen evolution reaction(HER) catalyst and a supercapacitor electrode material. However, its catalytic activity and capacitive performance are still hindered by its aggregation and poor intrinsic conductivity. Here, hollow rGO sphere-supported ultrathin MoSnanosheet arrays(hrGO@MoS) are constructed via a dual-template approach and employed as bifunctional HER catalyst and supercapacitor electrode material. Because of the expanded interlayer spacing in MoSnanosheets and more exposed electroactive S–Mo–S edges, the constructed h-rGO@MoSarchitectures exhibit enhanced HER performance. Furthermore, benefiting from the synergistic effect of the improved conductivity and boosted specific surface areas(144.9 m~2 g, ca. 4.6-times that of pristine MoS), the h-rGO@MoSarchitecture shows a high specific capacitance(238 F gat a current density of 0.5 A g), excellent rate capacitance, and remarkable cycle stability. Our synthesis method may be extended to construct other vertically aligned hollow architectures,which may serve both as efficient HER catalysts and supercapacitor electrodes.
引用
收藏
页码:70 / 80
页数:11
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