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电化学沉积法制备MnO2纳米棒阵列及电容性能

Electrochemical deposition of MnO2 nanorod array and its capacitive performance

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【作者】 方华邹伟张振华张世超

【Author】 FANG Hua;ZOU Wei;ZHANG Zhen-hua;ZHANG Shi-chao;School of Material and Chemical Engineering,Zhengzhou University of Light Industry;School of Materials Science and Engineering,Beihang University;

【通讯作者】 方华;

【机构】 郑州轻工业大学材料与化学工程学院北京航空航天大学大学材料科学与工程学院

【摘要】 采用阳极电化学沉积法在镍片上制备二氧化锰(MnO2纳米棒阵列。用XRD、SEM、透射电子显微镜(TEM)和选区电子衍射(SAED)对MnO2阵列进行分析,用恒流充放电与循环伏安测试研究电化学电容性能。制备的MnO2纳米棒直径约为500 nm,长度约为5μm,由相互连接的超薄纳米片构成,具有较好的电容性能。MnO2阵列电极在电流为1 A/g、电压为0. 05~1. 00 V时的比电容达152. 0 F/g,循环1 000次的比电容仍保持在146. 9 F/g。纳米棒阵列电极具有纳米多孔的结构,有利于电解质离子的快速迁移,从而获得较好的电容性能。

【Abstract】 Manganese dioxide( MnO2) nanorod array was deposited on nickel foils via anodic electrodeposition. The as-prepared MnO2 nanorod array was characterized by means of XRD,SEM,transmission electron microscopy( TEM) and selected-area electron diffraction( SAED). Electrochemical capacitive performance was investigated by galvanostatic charge/discharge and cyclic voltammetry methods. The obtained MnO2 nanorod was composed of interconnected ultrathin nanosheets. The nanorod was about500 nm in diameter and about 5 μm in length,exhibited excellent capacitive performance. High specific capacitance of 152. 0 F/g was achieved at 1 A/g in 0. 05-1. 00 V,the specific capacitance could retain 146. 9 F/g after 1 000 cycles. The superior capacitive performance could be attributed to its unique nanoporous structure,which facilitated fast ions transportation.

【基金】 国家自然科学基金(U1504204,51774017)
  • 【分类号】TM53
  • 【被引频次】4
  • 【下载频次】344
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