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Platinum monolayer electrocatalyst on gold nanostructures on silicon for photoelectrochemical hydrogen evolution

机译:硅上金纳米结构上的铂单层电催化剂,用于光电化学制氢

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摘要

Pt monolayer decorated gold nanostructured film on planar p-type silicon is utilized for photoelectrochemical H_2 generation in this work. First, gold nanostructured film on silicon was spontaneously produced by galvanic displacement of the reduction of gold ion and the oxidation of silicon in the presence of fluoride anion. Second, underpotential deposition (UPD) of copper under illumination produced Cu monolayer on gold nanostructured film followed by galvanic exchange of less-noble Cu monolayer with more-noble PtCl _6 ~(2-). Pt(shell)/Au(core) on p-type silicon showed the similar activity with platinum nanoparticle on silicon for photoelectrochemical hydrogen evolution reaction in spite of low platinum loading. From Tafel analysis, Pt(shell)/Au(core) electrocatalyst shows the higher area-specific activity than platinum nanoparticle on silicon demonstrating the significant role of underlying gold for charge transfer reaction from silicon to H ~+ through platinum catalyst.
机译:在这项工作中,在平面p型硅上的Pt单层装饰的金纳米结构薄膜被用于光电化学H_2的产生。首先,通过在氟化物阴离子存在下通过电置换金离子的还原和硅的氧化,自发地在硅上形成金纳米结构膜。其次,在光照下铜的欠电势沉积(UPD)在金纳米结构膜上产生了Cu单层,然后将较贵的Cu单层与较贵的PtCl _6〜(2-)进行电交换。尽管铂含量低,但p型硅上的Pt(壳)/ Au(核)显示出与光子上的铂纳米颗粒相似的光电化学氢释放反应活性。根据Tafel分析,Pt(壳)/ Au(核)电催化剂在硅上显示出比铂纳米颗粒更高的比表面积活性,证明了底层金对于通过铂催化剂将电荷从硅转移到H〜+的重要作用。

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