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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 >Supercapacitive performance of electrochemically synthesized nanocrystalline MnO2 films using different plating solutions: A comparative study
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Supercapacitive performance of electrochemically synthesized nanocrystalline MnO2 films using different plating solutions: A comparative study

机译:使用不同电镀溶液的电化学合成纳米晶MNO2薄膜的超级电容性能:对比研究

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摘要

In this paper we report the comparative supercapacitive performance of the electrodeposited MnO2 films prepared using different plating solutions, namely KMnO4, MnSO4 and Mn(CH3COO)(2). All the MnO2 films possess the hexagonal phase of epsilon manganese dioxide (epsilon-MnO2, akhtenkite), consistent with the JCPDS card no. 12-0141. The analyses of SEM images reveal that the electrodeposited MnO2 film prepared from the plating solution KMnO4 has a porous microstructure comprising of sparsely distributed grains, whereas that prepared from MnSO4 has a uniform morphology covered with nanofibers having porous spaces between them, and that prepared using Mn(CH3COO)(2) exhibits a dense morphology comprising of nanofibres. The galvanostatic charge/discharge measurements show the maximum specific capacitance 325.6 F/g for the MnO2 film prepared using KMnO4, followed by 275.2 F/g and 174.5 F/g for the films prepared by MnSO4 and Mn(CH3COO)(2)., respectively. The variation in specific capacitances of the films is attributed to varying morphological features of the films. (X) 2018 Elsevier B. V. All rights reserved.
机译:在本文中,我们报告了使用不同电镀溶液制备的电沉积MNO2薄膜的比较超级电容性能,即KMnO4,MnSO 4和Mn(CH 3 COO)(2)。所有MNO2薄膜都具有ε-二氧化锰(Epsilon-MnO2,Akhtenkite)的六方相,与JCPDS卡号一致。 12-0141。 SEM图像的分析揭示了由电镀溶液制备的电沉积MnO2薄膜kmnO4具有多孔微结构,包括稀疏分布的晶粒,而由MnSO4制备的含有均匀的形态学覆盖着它们之间的多孔空间的纳米纤维,并且使用Mn (CH3COO)(2)表现出包含纳米纤维的致密形态。镀锌电荷/放电测量显示使用KMNO4制备的MNO2薄膜的最大特定电容325.6 f / g,其次是MnSO4和Mn(CH 3 COO)(2)制备的薄膜的275.2f / g和174.5f / g。,分别。膜的特定电容的变化归因于薄膜的形态学特征。 (x)2018 Elsevier B. V.保留所有权利。

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