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探究 Pt-Ni-Pt(111) 双金属表面电子结构对氨分解反应的影响。

Probing the effect of the Pt-Ni-Pt(111) bimetallic surface electronic structures on the ammonia decomposition reaction.

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore, Singapore.

Department of Physics, National University of Singapore, 2 Science Drive 3, 117542, Singapore, Singapore and Singapore-Peking University Research Centre (SPURc), 1 CREATE Way, #15-01, CREATE Tower, 138602, Singapore, Singapore.

出版信息

Nanoscale. 2017 Jan 5;9(2):666-672. doi: 10.1039/c6nr08311k.

Abstract

We report a detailed investigation of elementary catalytic decomposition of ammonia on the Pt-Ni-Pt(111) bimetallic surface using in situ near ambient pressure X-ray photoelectron spectroscopy. Under the near ambient pressure (0.6 mbar) reaction conditions, a different dehydrogenation pathway with a reduced activation energy barrier for recombinative nitrogen desorption on the Pt-Ni-Pt(111) bimetallic surface is observed. The unique surface catalytic activity is correlated with the downward shift of the Pt 5d band states induced by the Ni subsurface atoms via charge redistribution of the topmost Pt layer. Our results provide a practical understanding of the unique chemistry of bimetallic catalysts for facile ammonia decomposition under realistic reaction conditions.

摘要

我们使用原位近常压 X 射线光电子能谱详细研究了氨在 Pt-Ni-Pt(111) 双金属表面上的基本催化分解。在近常压(0.6 毫巴)反应条件下,我们观察到 Pt-Ni-Pt(111) 双金属表面上具有较低的氮重组脱附活化能垒的不同脱氢反应途径。这种独特的表面催化活性与 Ni 次表面原子通过最顶层 Pt 层的电荷重新分布引起的 Pt 5d 能带状态向下移动有关。我们的结果为在实际反应条件下易于氨分解的双金属催化剂的独特化学性质提供了实际的理解。

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