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首页> 外文期刊>Electrochimica Acta >In-situ synthesis of NiO foamed sheets on Ni foam as efficient cathode of battery-type supercapacitor
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In-situ synthesis of NiO foamed sheets on Ni foam as efficient cathode of battery-type supercapacitor

机译:原位合成NIO泡沫板在Ni泡沫上作为电池型超级电容器的高效阴极

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摘要

Herein we report an in-situ strategy for synthesizing NiO foamed sheet on Ni foam substrate which could achieve great improvement on the areal performance of battery-type supercapacitors. The anchored NiO foamed sheets are synthesized via a precursor growth step by hydrothermal oxidation, and followed by a pore-inducing step through heat treating. The physical characterizations indicate that this film product has a multi-level pore structure with high active surface area. As for electrode material, the anchored sheets could ensure excellent conductivity at the film/substrate interface, and the porous structure could form high free electron/ionic diffusion routes which facilitates the redox reactions for reversible energy storage. The electrochemical measurements show that the areal capacity of as-synthesized electrode could achieve 4.31-3.39 C cm(-2) at a wide current range of 10-200 mA cm(-2). The single supercapacitor device exhibits a high areal energy density of 9.84-9.45W h m(-2) at a wide power density of 100-2000 W m(-2). (C) 2018 Elsevier Ltd. All rights reserved.
机译:在此,我们报告了用于在Ni泡沫底物上合成NIO发泡片的原位策略,这可以达到电池型超级电容器的面积性能的巨大改善。通过水热氧化通过前体生长步骤合成锚固的NIO发泡片,然后通过热处理进行孔诱导步骤。物理特性表明,该薄膜产品具有具有高活性表面积的多级孔结构。对于电极材料,锚固片可以确保在薄膜/衬底界面处的优异导电性,并且多孔结构可以形成高自由电子/离子扩散途径,这促进了用于可逆能量储存的氧化还原反应。电化学测量结果表明,合成电极的面积容量可以在宽电流范围内达到4.31-3.39ccm(-2),在10-200mA cm(-2)中。单个超级电容器装置在100-2000WM(-2)的宽功率密度下具有9.84-9.45W H m(-2)的高面积能密度。 (c)2018年elestvier有限公司保留所有权利。

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