Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5458176 | Journal of Alloys and Compounds | 2017 | 35 Pages |
Abstract
The research of cheap, earth-abundant and efficient electrode material is of significance for advanced supercapitors. Here we report a simple and cost-effective strategy for synthesis of Ni0.85Se via hydrothermal method. A systematic study of the solvent dependent morphological modification and its subsequent influence on supercapitors performance have been investigated. When evaluated as electrode material in supercapacitor, the as-fabricated flower-like Ni0.85Se electrode shows superior electrochemical performance with excellent rate capability and long cycle life. Besides, the energy storage behavior of flower-like Ni0.85Se was investigated in an asymmetric supercapacitor configuration. The as-assembled Ni0.85Se//graphene hybrid supercapacitor showed a specific capacitance of 103.4Â FÂ gâ1 at 1Â AÂ gâ1 and cycle performance of 90.6% after 10Â 000 uninterrupted cycles at a high current density of 8Â AÂ gâ1. Furthermore, the maximum energy density of 32.3Â Wh kgâ1 and power density of 1.5Â kWÂ kgâ1 were obtained. The high specific capacitance and good cyclic stability as well as high energy/power density of the device make it a promising supercapacitor for the practical applications. Moreover, this work also provides a straightforward and effective approach to synthesize selenide-based electrode material in high performance energy storage devices.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Shuan Ma, Shiqi Zhou, Shaolan Wang, Mabao Liu,