首页> 外文会议>2010 International Conference on Optics Photonics and Energy Engineering.;vol. 1. >The HER Property of Electrodeposited Ni-P Electrode with Micro-patterned Structure
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The HER Property of Electrodeposited Ni-P Electrode with Micro-patterned Structure

机译:微图案结构电沉积Ni-P电极的HER特性

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Ni-P alloy has been shown to be a potential electrode material for hydrogen production from electrolysis. The enhancement of its electrocatalytic efficiency with micro-patterned structures fabricated using microelectromechanical system (MEMS) process was investigated in this study. The cylindrical columns with diameter of 65μm and spacing of 105μm were fabricated in rectangular array and two different heights. From the potentiodynamic polarization curves measured in 0.5M H2SO4 solution, the current density at -0.75VSCE was increased from 181mA cm-2 to 426 mA cm-2, planar electrode to micro-structured electrode, which denoted a 2.35 times increase for hydrogen evolution reaction (HER) efficiency. It was noted that enhancement in HER efficiency was higher than the corresponding increment in apparent surface area. The electric field concentration at the edges of the columnar structure could contribute to the raise in efficiency. However, as the overplating occurred, the narrowing of the spacing between the top portions of the microcolumns could impede the electric flux into their bottom parts. Part of the surface area became less active in HER. Therefore, suitable configuration design in the micro-pattern is desired.
机译:Ni-P合金已被证明是电解产生氢的潜在电极材料。本研究研究了使用微机电系统(MEMS)工艺制造的微图案结构提高了其电催化效率。直径为65μm,间距为105μm的圆柱以矩形阵列和两种不同的高度制造。从在0.5M H2SO4溶液中测得的电位动力学极化曲线来看,-0.75VSCE处的电流密度从181mA cm-2增加到426mA cm-2,从平面电极到微结构电极,这表明析氢增加了2.35倍反应(HER)效率。注意到HER效率的提高高于表观表面积的相应增加。柱状结构的边缘处的电场集中可有助于效率的提高。然而,当发生过度电镀时,微柱顶部之间的间距变窄可能会阻碍进入其底部的电通量。在HER中,部分表面积的活性降低。因此,期望在微图案中合适的配置设计。

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