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首页> 外文期刊>Electrochimica Acta >Design of Nickel Electrodes by Electrodeposition: Effect of Internal Stress on Hydrogen Evolution Reaction in Alkaline Solutions
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Design of Nickel Electrodes by Electrodeposition: Effect of Internal Stress on Hydrogen Evolution Reaction in Alkaline Solutions

机译:电沉积镍电极设计:内应力对碱性溶液中氢化反应的影响

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Here we report the fabrication of Ni electrodes with induced internal stress, electrodeposited in the presence of coumarin (COU) or 1,3,6-naphthalenetrisulfonic acid trisodium salt (NTS), to enhance the hydrogen evolution reaction. The crystallographic structure and morphology of the Ni electrodeposits prepared from a plating bath containing COU showed large columnar structures with a [100] preferred orientation, whereas the electrodeposits with NTS grew fine columnar structures along the [111] and [100] direction. The tensile or compressive stress in the Ni lattice was controlled by additive concentration, which led to the incorporation of hydrogen or sulfur in the Ni matrix. The Ni electrode with induced compressive stress exhibited a higher exchange current density and lower Tafel slopes than those with induced tensile stress, which can be attributed to modification of the hydrogen adsorption energy, as evidenced by a downshift in the d-band center. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这里,我们报告了Ni电极的制备具有诱导的内应力,在香豆素(Cou)或1,3,6-萘四甲磺酸三钠盐(NTS)存在下电沉积,以增强氢化反应。由电镀浴含有C作用制备的Ni电沉积的晶体结构和形态显示出具有[100]优选取向的大柱状结构,而NTS的电吞吐量沿[111]和[100]方向增长精细的柱状结构。 Ni晶格中的拉伸或压缩应力由添加剂浓度控制,从而导致Ni基质中的氢气或硫掺入。具有诱导压缩应力的Ni电极表现出比具有诱导拉伸应力的电流密度和更低的Tafel斜率,这可以归因于氢吸附能量的改变,如D波段中心的降档所证明。 (c)2017 Elsevier Ltd.保留所有权利。

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