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Electrochemical analysis of interface adsorption phenomena on three-dimensional nano-nickel electrode deposited on silicon microchannel plate

机译:硅微通道板上沉积的三维纳米镍电极上界面吸附现象的电化学分析

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The electrochemical double-layer capacitance and adsorption-desorption phenomena of the three-dimensional (3D) nano-nickel electrode on silicon microchannel plate is investigated electrochemically in the neutral aqueous solution. The electrochemical double-layer capacitance of the 3D electrode increases due to the porous structure of the nickel electrode and 3D architecture of the silicon microchannel plate and the charging process can be completed in a shorter time due to the special 3D architecture. The specific monolayer adsorption, electrochemical double-layer adsorption, and diffusion-limited electrochemical processes can be identified clearly on account of the larger surface area and described by an exponential relationship. Different adsorption quantities are also observed from cations and anions on account of the small channels in the 3D nano-nickel electrode. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在中性水溶液中,对硅微通道板上的三维(3D)纳米镍电极的电化学双层电容和吸附-脱附现象进行了电化学研究。 3D电极的电化学双层电容由于镍电极的多孔结构和硅微通道板的3D结构而增加,并且由于特殊的3D结构而可以在更短的时间内完成充电过程。特定的单层吸附,电化学双层吸附和扩散受限的电化学过程可以根据较大的表面积进行清晰识别,并通过指数关系进行描述。由于3D纳米镍电极中的小通道,从阳离子和阴离子中也观察到不同的吸附量。 (C)2016 Elsevier Ltd.保留所有权利。

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