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Hydrothermal synthesis of porous Co(OH)_2 nanoflake array film and its supercapacitor application

机译:多孔Co(OH)_2纳米片阵列膜的水热合成及其超级电容器应用

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摘要

Porous α-Co(OH>2 nanoflake array film is prepared by a facile hydrothermal synthesis method. The α-Co(OH)2 nanoflake array film exhibits a highly porous net-like structure composed of interconnected nanoflakes with a thickness of 15 nm. The pseudo-capacitive behaviour of the Co(OH)2 nanoflake array film is investigated by cyclic voltammograms (CV) and galvanostatic charge-discharge tests in 2 M KOH. The α-Co(OH)_2 nanoflake array film exhibits high capacitances of 1017Fg~(-1) at 2Ag~(-1) and 890Fg~(-1) at 40Ag~(-1) as well as rather good cycling stability for supercapacitor application. The porous architecture is responsible for the enhancement of the electrochemical properties because it provides fast ion and electron transfer, large reaction surface area and good strain accommodation.
机译:通过一种简便的水热合成方法制备出多孔的α-Co(OH> 2)纳米片阵列膜,该α-Co(OH)2纳米片阵列膜呈现出由相互连接的纳米片组成的高度多孔的网状结构,其厚度为15nm。通过在2 M KOH中的循环伏安图(CV)和恒电流充放电测试研究了Co(OH)2纳米片阵列膜的拟电容行为.α-Co(OH)_2纳米片阵列膜表现出1017Fg的高电容2Ag〜(-1)时的〜(-1)和40Ag〜(-1)时的890Fg〜(-1)以及超级电容器应用的良好循环稳定性。多孔结构负责增强电化学性能,因为它提供了快速的离子和电子转移,大的反应表面积和良好的应变适应性。

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