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首页> 外文期刊>Transactions of the Japan Society for Computational Engineering and Science >Atomic Structure and Catalytic Activity of W-Modified Ni2P Surface Alloy by Photoelectron Diffraction and Spectroscopy
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Atomic Structure and Catalytic Activity of W-Modified Ni2P Surface Alloy by Photoelectron Diffraction and Spectroscopy

机译:W修饰的Ni2P表面合金的光电子衍射和光谱研究其原子结构和催化活性

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摘要

The surface alloying is the important topics in Ni2P study which is expected for next generation hydrodesulfurization and hydrodenitrogenation catalyst. The atomic structure and catalytic properties of a single crystalline Ni2P surface modified with W (W-Ni2P) was investigated by photoelectron diffraction (PED) and spectroscopy. PED is an element and site selective surface structure analysis method that enables observation of three-dimensional atomic configurations of the surface local structure. The selective replacement of W to the Ni site in the Ni2P crystal was clarified by PED. Chemical reactivities for NO molecules of the W-Ni2P and the clean Ni2P surfaces were compared. On the clean Ni2P surface, the NO adsorption did not occur, whereas W-Ni2P surface showed remarkable activity for NO adsorption. [DOI: 10.1380/ejssnt.2014.53]
机译:表面合金化是Ni2P研究的重要课题,有望用于下一代加氢脱硫和加氢脱氮催化剂。通过光电子衍射(PED)和光谱学研究了用W修饰的单晶Ni2P表面的原子结构和催化性能(W-Ni2P)。 PED是一种元素和位置选择性表面结构分析方法,可以观察表面局部结构的三维原子构型。通过PED阐明了W选择性取代Ni2P晶体中的Ni位。比较了W-Ni2P和干净的Ni2P表面的NO分子的化学反应性。在干净的Ni2P表面上没有发生NO吸附,而W-Ni2P表面显示出显着的NO吸附活性。 [DOI:10.1380 / ejssnt.2014.53]

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