Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7889727 | Composites Part A: Applied Science and Manufacturing | 2018 | 33 Pages |
Abstract
We have elaborated nanocomposite electrodes, which were designed and synthesized via facile hydrothermal with further annealing processes of NiMoO4 nanosheets on cobalt and magnesium double hydroxide (DH) growing directly on Ni foam. The integrated electrode (the optimum hydrothermal time 6â¯h) designed according to this structural pattern, had an excellent electrochemical performance along with a high areal-specific capacitance of 6.50â¯Fâ¯cmâ2 at 5â¯mAâ¯cmâ2 and retained 56% at 60â¯mAâ¯cmâ2, the capacitance of the electrode material remained 74% after 5000 cycles at 40â¯mAâ¯cmâ2. The Co-Mg compound@NiMoO4 and activated carbon were assembled into an asymmetric supercapacitor (Co-Mg compound@NiMoO4//AC), which allowed the feasible voltage could reach 1.6â¯V and a high energy density of 57â¯W hâ¯kgâ1 at the power density of 0.4â¯kWâ¯kgâ1. The Co-Mg compound@NiMoO4//AC also showed significant cyclic stability with the capacitance retention of 87% after 5000 cycles.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Yu Zhang, Wei-dong Xue, Huan Yin, Dong-xu He, Rui Zhao,