Density functional theory study on hydrogenation mechanism in catalyst-activated Mg(0001) surface

来源期刊:中国有色金属学报(英文版)2009年第2期

论文作者:吴广新 刘素霞 张捷宇 吴永全 李谦 周国治 包新华

文章页码:383 - 388

Key words:magnesium alloy; hydrogenation mechanism; catalyst effect; density functional theory

Abstract: A small amount of Fe3O4 catalyst is known to substantially improve the adsorption and desorption thermodynamics and kinetics of Mg-based materials. Using density functional theory in combination with nudged elastic band method, the dissociative chemisorptions of hydrogen on both pure and Fe-doped Mg(0001) surfaces were studied. The adsorption energy calculations show that a weakly physisorbed state above pure and Fe-doped Mg surface atoms can serve as a precursor state to dissociative chemisorption. Then, the dissociation pathway of H2 and the relative barrier were investigated. The calculated dissociation barrier (1.08 eV) of hydrogen molecule on a pure Mg(0001) surface is in good agreement with comparable experimental and theoretical studies. For the Fe-doped Mg(0001) surface, the activated barrier decreases to 0.101 eV due to the strong interaction between the s orbital of H and the d orbital of Fe.

基金信息:the Hi-tech Research and Development Program of China
the National Natural Science Foundation of China
Foundation for the Author of National Excellent Doctoral Dissertation of China
Program for Changjiang Scholars and Innovative Research Team in University

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