首页> 外文期刊>ACS applied materials & interfaces >Decoration of Micro-/Nanoscale Noble Metal Particles on 3D Porous Nickel Using Electrodeposition Technique as Electrocatalyst for Hydrogen Evolution Reaction in Alkaline Electrolyte
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Decoration of Micro-/Nanoscale Noble Metal Particles on 3D Porous Nickel Using Electrodeposition Technique as Electrocatalyst for Hydrogen Evolution Reaction in Alkaline Electrolyte

机译:电沉积技术作为碱性电解液中析氢反应的电催化剂,在3D多孔镍上修饰微/纳米级贵金属颗粒

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摘要

Micro-anoscale noble metal (Ag, Au, and Pt) particle-decorated 3D porous nickel electrodes for hydrogen evolution reaction (HER) in alkaline electrolyte are fabricated via galvanostatic electrodeposition technique. The developed electrodes are characterized by field emission scanning electron microscopy and electrochemical measurements including Tafel polarization curves, cyclic voltammetry, and electrochemical impedance spectroscopy. It is clearly shown that the enlarged real surface area caused by 3D highly porous dendritic structure has greatly reinforced the electrocatalytic activity toward HER. Comparative analysis of electrodeposited Ag, Au, and Pt particle-decorated porous nickel electrodes for HER indicates that both intrinsic property and size of the noble metal particles can lead to distinct catalytic activities. Both nanoscale Au and Pt particles have further reinforcement effect toward HER, whereas microscale Ag particles exhibit the reverse effect. As an effective 3D hydrogen evolution cathode, the nanoscale Pt-particle-decorated 3D porous nickel electrode demonstrates the highest catalytic activity with an extremely low overpotential of -0.045 V for hydrogen production, a considerable exchange current density of 9.47 mA cm(-2) at 25 degrees C, and high durability in long-term electrolysis, all of which are attributed to the intrinsic catalytic property and the extremely small size of Pt particles.
机译:通过恒电流电沉积技术,制备了用于阳极电解液中氢发生反应(HER)的微/纳米级贵金属(Ag,Au和Pt)颗粒修饰的3D多孔镍电极。所开发的电极的特征在于场发射扫描电子显微镜和电化学测量,包括Tafel极化曲线,循环伏安法和电化学阻抗谱。清楚地表明,由3D高度多孔的树枝状结构引起的增大的实际表面积大大增强了对HER的电催化活性。对用于HER的电沉积的Ag,Au和Pt颗粒装饰的多孔镍电极的比较分析表明,贵金属颗粒的固有性质和尺寸均可导致不同的催化活性。纳米级的Au和Pt颗粒均对HER具有进一步的增强作用,而微米级的Ag颗粒则具有相反的作用。纳米级Pt颗粒修饰的3D多孔镍电极作为有效的3D析氢阴极,显示出最高的催化活性,产生氢的极低过电位-0.045 V,相当大的交换电流密度为9.47 mA cm(-2)在25摄氏度的温度下,以及长期电解中的高耐久性,所有这些都归因于固有的催化性能和Pt颗粒的极小尺寸。

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