Controllable synthesis of CoMoO4-modified NiMoO4: a stepwise chemical etching method of materials for hybrid supercapacitors
摘要
Multi-component electrode materials with novel structures are highly pursued to the assembly of high-performance hybrid supercapacitors. In this paper, we have prepared CoMoO4-modified NiMoO4 and nitrogen-doped porous carbon by using α-MoO3 and ZIF-8/ZIF-67 as sacrificial templates. In particular, α-MoO3 and ZIF-67 were also used as the molybdenum and cobalt sources for the in situ synthesis of NiMoO4 and CoMoO4, respectively. The structural construction and surface modification of the NiMoO4 electrode were realized under mild reaction conditions. As compared with the pristine NiMoO4, the electrochemical properties of CoMoO4-modified NiMoO4 were significantly improved. The maximal capacity of the CoMoO4-modified NiMoO4 under 3-electrode system is 522.5 C g−1. When the power density is 800 W kg−1, the maximum energy density of the hybrid supercapacitor based on CoMoO4-modified NiMoO4 and nitrogen-doped porous carbon is 41.29 Wh kg−1. All electrochemical results indicate that multi-component electrodes prepared by our sacrificial template strategy have the possibility to be applied in hybrid energy storage equipment.