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Nanostructuring of Nickel Hydroxide via a Template Solution Approach for Effi cient Electrochemical Devices

机译:通过模板溶液法对高效电化学装置进行氢氧化镍的纳米结构

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摘要

Nanostructuring is a key approach in enhancing the performance of electrochemical devices. In this work, nanostructuring is achieved by the electrodeposition of nickel hydroxide nanowire arrays, with both open-ended and close-ended structures, through anodized aluminium oxide (AAO) templates that are directly fabricated on indium tin oxide/glass substrates. The open-ended and close-ended nanostructures are compared together with identically fabricated thin fi lms to show the effects of nanostructuring. Open-ended nanowire arrays demonstrated the best electrochemical activity with superior transmittance modulation and faster activation, while the thin fi lm showed the worst performance. In comparing with the close-ended structures, enhanced performance is observed for the open-ended structures despite the use of less material for the latter. This demonstrates that in designing nanostructures or porous materials, it is important for the porosity to have both interconnectivity and exposure to the electrolyte in electrochemical reactions.
机译:纳米结构化是增强电化学装置性能的关键方法。在这项工作中,通过直接在铟锡氧化物/玻璃基板上制造的阳极氧化铝(AAO)模板,通过电沉积氢氧化镍纳米线阵列(具有开放式和封闭式结构)来实现纳米结构。将开放式和封闭式纳米结构与相同制作的薄膜进行比较,以显示纳米结构的效果。开放式纳米线阵列表现出最佳的电化学活性,具有出色的透射率调制和更快的活化,而薄膜则表现出最差的性能。与封闭式结构相比,尽管开放式结构使用较少的材料,但观察到增强的性能。这表明在设计纳米结构或多孔材料时,重要的是孔隙率在电化学反应中既要具有互连性又要与电解质接触。

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