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Cathodic electrodeposition and electrochemical response of manganese oxide pseudocapacitor electrodes

机译:锰氧化物假电容器电极的阴极电沉积和电化学响应

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In this work, we reported the cathodic electrodeposition of manganese oxide films, from nitrate based electrolytes, for pseudocapacitors working in alkaline media. The correlation of the post thermal treatment, the deposition potential, the electrolyte concentration and the applied charge on surface morphology and electrochemical response of the electro-deposited films were studied. Morphological characteristics and electrochemical response varied depending on the deposition parameter. Via the optimized deposition process, hierarchical nanoparticlesanoflakes Mn3O4 films were obtained, exhibiting a high specific capacitance value of 416 F g(-1) an applied current density of 1 A g(-1) in 1 M NaOH electrolyte. The films exhibited specific capacitance retention of 64% when increasing the current density from 1 A g(-1) to 10 A g(-1). The films showed the specific capacitance value 196 F g(-1) after continuous charge discharge at 1 A g(-1) for 1000 cycles, thus pointing out the possibility of using cathodically deposited manganese oxide films as electrodes for pseudocapacitors. (C) Copyright 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们报道了硝酸盐基电解质中锰氧化物膜的阴极电沉积,用于在碱性介质中工作的伪电容器。研究了后热处理,沉积电位,电解质浓度以及外加电荷对电沉积膜表面形貌和电化学响应的影响。形态特征和电化学响应根据沉积参数而变化。通过优化的沉积工艺,获得了分层的纳米颗粒/纳米薄片Mn3O4薄膜,在1 M NaOH电解质中施加的电流密度为1 A g(-1),显示出416 F g(-1)的高比电容值。当电流密度从1 A g(-1)增加到10 A g(-1)时,薄膜的比电容保持率为64%。薄膜在1 A g(-1)下连续充电1000次循环后显示的比电容值为196 F g(-1),从而指出了使用阴极沉积的氧化锰薄膜作为伪电容器电极的可能性。 (C)版权所有2015,Hydrogen Energy Publications,LLC。由Elsevier Ltd.出版。保留所有权利。

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