Green preparation of low-crystalline CoMoO4 center dot 0.9H(2)O/carbon composite for energy storage applications using a mechanochemical method

IONICS(2023)

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摘要
Metal oxide/carbon composites have attracted considerable attention owing to their high charge storage capacity and excellent cycling stability. In this work, hierarchical porous carbon loaded with low-crystalline CoMoO4 center dot 0.9H(2)O (CMOC) was prepared via a solvent-free mechanochemical method. Due to the low-crystalline CoMoO4 center dot 0.9H(2)O, the porous structure, and the superior conductivity of carbon, CMOC exhibited good charge storage capacity (340 F g(-1)) and excellent cycling stability (similar to 85% of capacitance retention for 10,000 cycles). Moreover, an asymmetric supercapacitor device (CMOC//AC ASC) was assembled using CMOC as the positive electrode and activated carbon as the negative electrode, thus achieving a high-energy density of 23.1 Wh kg(-1) at a power density of 798.1 W kg(-1). The mechanochemical method used in the study is simple, cost-effective, and generalizable. This study will provide valuable information for the large-scale preparation of metal oxide/carbon composites as electrode materials for supercapacitors.
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关键词
CMOC, Mechanochemical method, Supercapacitors
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