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Hierarchically porous Co3O4 film with mesoporous walls prepared via liquid crystalline template for supercapacitor application
Authors:YF Yuan  XH Xia  JB Wu  XH Huang  YB Pei  JL Yang  SY Guo
Institution:aCollege of Machinery and Automation, Zhejiang Sci-Tech University, Hangzhou, 310018, China;bState Key Laboratory of Silicon Materials and Department of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China;cLaboratory of Function Materials, Taizhou University, Linhai, 318000, China
Abstract:Hierarchically porous Co3O4 film is prepared by a cathodic electrodeposition via liquid crystalline template. The as-prepared Co3O4 film has a net-like structure of interconnected nanoflakes with a thickness of 15–20 nm. Interestingly, the Co3O4 nanoflakes possess mesoporous walls ranging from 2 to 3 nm. As cathode material for supercapacitors, the hierarchically porous Co3O4 film exhibits superior supercapacitor performances with high specific capacitances (443 F g− 1 at 2 A g− 1 and 334 F g− 1 at 40 A g− 1) as well as excellent cycle life, making it suitable for high-performance supercapacitor application. The improved supercapacitor performances are due to its unique hierarchically porous morphological characteristics, which provide fast ion and electron transfer, large reaction surface area, resulting in fast reaction kinetics.
Keywords:Cobalt oxide  Porous film  Supercapacitor  Electrodeposition  Liquid crystalline template
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