Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5149173 | Journal of Power Sources | 2017 | 8 Pages |
Abstract
MnCO3 microsphere@MnO2 and MnCO3 microcube@MnO2 heterostructures have been synthesized for supercapacitor electrodes through self-assembly and oxidation process. The morphologies of MnCO3 are effectively controlled by adding (NH4)2SO4 solution. The MnCO3 microsphere@MnO2 and MnCO3 microcube@MnO2 heterostructures display high capacitances of 363Â FÂ gâ1 and 290Â FÂ gâ1 at 1Â AÂ gâ1, respectively. In addition, the assembled asymmetric supercapacitor based on MnCO3 microsphere@MnO2 and active grapheme (AG) exhibits a high energy density of 27.4Â Wh kgâ1 at a power density of 271.7Â WÂ kgâ1. The synthetic strategy provides a fine reference for metal oxide structures and the results indicate the MnCO3 microsphere@MnO2 and MnCO3 microcube@MnO2 heterostructures electrodes can be a promising material for energy storage applications.
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
Hao Chen, Zhe Yan, Xiao Ying Liu, Xiao Long Guo, Yu Xin Zhang, Zong-Huai Liu,