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首页> 外文期刊>Physical chemistry chemical physics: PCCP >High hydrogen evolution activity and suppressed H2O2 production on Pt-skin/PtFe alloy nanocatalysts for proton exchange membrane water electrolysis
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High hydrogen evolution activity and suppressed H2O2 production on Pt-skin/PtFe alloy nanocatalysts for proton exchange membrane water electrolysis

机译:高氢进化活性和抑制Pt-Skin / PTFE合金纳米催化剂的H2O2生产,用于质子交换膜水电解

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摘要

We, for the first time, demonstrate high electrocatalytic activity for the hydrogen evolution reaction (HER) on PtFe alloy nanoparticles with stabilized Pt-skin layers supported on carbon black (Pt-xAL-PtFe/C), which allows the reduction of Pt loading to be lowered to 1/20 compared with a conventional Pt black cathode in proton exchange membrane water electrolysis (PEMWE). The area-specific HER activity of Pt-xAL-PtFe/C was found to be ca. 2 times higher than that of commercial Pt/C at 80 degrees C and -0.02 V vs. RHE. Pt-xAL-PtFe/C exhibited the additional important advantage of suppressed H2O2 production during the HER in the presence of O-2, which inevitably diffuses from the anode in PEMWE. Both the excellent HER performance and low H2O2 production are attributed to the lower adsorption energies of atomic hydrogen on Pt-skin surfaces, as revealed by DFT calculations.
机译:首次,我们首次证明了在PTFE合金纳米粒子上的氢进化反应(HER)的高电催化活性,其中含有稳定的Pt-Skin层(Pt-Xal-PTFE / C),其允许减少Pt载荷 与质子交换膜水电解(PEMWE)中的常规PT黑色阴极相比降低至1/20。 发现了Pt-Xal-PTFE / C的区域特异性她的活性是CA。 在80度C和-0.02V与RHE高于商业PT / C的2倍。 PT-XAL-PTFE / c表现出在O-2存在下抑制H2O2产生的额外重要优势,这不可避免地从PEMWE中的阳极扩散。 优异的性能和低H2O2生产既归因于PT-Skin表面上的原子氢的较低吸附能量,如DFT计算所透露。

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