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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Synthesis of mesoporous NiO nanoflake array and its enhanced electrochemical performance for supercapacitor application
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Synthesis of mesoporous NiO nanoflake array and its enhanced electrochemical performance for supercapacitor application

机译:介孔NIO纳米铝饼阵列的合成及其增强的超级电容器应用的电化学性能

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摘要

Highly porous metal oxide nanoflake arrays are important for developing high-performance electrochemical devices. Herein, mesoporous NiO nanoflake arrays have been successfully prepared by a facile hydro-thermal synthesis method. Except for the mesoporous walls, the NiO nanoflakes are interconnected with each other to form macroporous structure. This porous structured NiO nanoflake arrays possess a high specific surface area of ~185 m~2 g~(-1). The supercapacitor performance of the mesoporous NiO nanoflake arrays is fully characterized. The mesoporous NiO nanoflake arrays exhibit weaker polarization, higher specific capacitance and better rate capability than the common NiO nanoflake arrays. The mesoporous NiO nanoflake arrays deliver a specific capacitance of 400 F g~(-1) at 2A g~(-1) and 339 F g~(-1) at 40 A g~(-1) respectively, higher than those of the common NiO nanoflake arrays (287 F g~(-1) at 2 A g~(-1) and 179 F g~(-1) at 40 Ag~(-1)). The enhanced performance is mainly due to the hierarchical pore system in the mesoporous NiO nanoflake arrays.
机译:高度多孔金属氧化物纳米辊阵列对于开发高性能电化学装置很重要。在此,通过容易水 - 热合成方法成功地制备了介孔NiO纳米鲸糖剂阵列。除了中孔壁外,NIO纳米薄片彼此互连以形成大孔结构。这种多孔结构的NiO纳米铝饼阵列具有〜185m〜2g〜(-1)的高比表面积。介孔NIO纳米铝饼阵列的超级电容器性能完全表征。中孔NIO纳米铝饼阵列表现出较弱的极化,更高的比电容和比普通的NIO纳米铝饼阵列更高的速率能力。中孔NIO纳米铝饼阵列分别在40Ag〜(-1)的2Ag〜(-1)和339f g〜(-1)下将特定电容为400 f g〜(-1),高于那些在40Ag〜(-1)的2A G〜(-1)和179°F G〜(-1)的常见NiO纳米载物阵列(287f g〜(-1))。增强的性能主要是由于中孔NIO纳米铝饼阵列中的分层孔系统。

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