S. Venugopal RaoIkkurthi Kanaka DurgaBandari NareshJin-Soo BakT. N. V. KrishnaCho InhoJin-Woo AhnHee‐Je Kim
This paper reports the facile synthesis of a novel architecture of Cu-MnS with PVP, where the high theoretical capacitance of MnS, low-cost, and high electrical conductivity of Cu, as well as appreciable surface area with high thermal and mechanical conductivity of PVP, as a single entity to fabricate a high-performance electrode for supercapacitor. Benefiting from their unique structures, the Cu-MnS with 2PVP electrode materials show a high specific capacitance of 833.58 F g−1 at 1 A g−1, reversibility for the charge/discharge process, which are much higher than that of the MnS-7 h, Cu-MnS, and Cu-MnS with 1 and 3PVP. The presence of an appropriate amount of PVP in Cu-MnS is favorable for improving the electrochemical performance of the electrode and the existence of Cu was inclined to enhance the electrical conductivity. The Cu-MnS with 2PVP electrode is a good reference for researchers to design and fabricate new electrode materials with enhanced capacitive performance.
Lushan YangYu LiuJingbo LiGuoping Du
Hongying QuanBaochang ChengDezhi ChenXiaohui SuYanhe XiaoShuijin Lei
Chongjun ZhaoXiaoxiao ShaoZhaoqiang ZhuChunhua ZhaoXiuzhen QianChunhua ZhaoXiuzhen Qian
Bin XuLin YuMing SunFei YeYuanhong ZhongGao ChengHui WangYuliang Mai
Yuxin ZhangXiaodong HaoZeng Peng DiaoJing LiYu Guan