High chemisorption abilities of hydrogen and oxygen on ultrasmall iron clusters: A first-principles study.

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Bibliographic Details
Title: High chemisorption abilities of hydrogen and oxygen on ultrasmall iron clusters: A first-principles study.
Authors: Wang, Zongying1,2, Liang, Tianshui1,2, Yang, Yongpeng1 ypyang2017@zzu.edu.cn, Shen, Xiangjian1 xjshen85@zzu.edu.cn
Source: Chemical Physics Letters. Aug2018, Vol. 705, p59-64. 6p.
Subjects: Chemisorption, Iron clusters, Chemical bonds, Oxygen atom transfer reactions, Hydrogen atom
Abstract: The interactions between atoms and small metal clusters are of great significance in the exploration of novel bonding mechanism. We present the strong chemisorption abilities of ultrasmall iron clusters interacting with large numbers of hydrogen and oxygen atoms from first-principles calculations. Geometric structures show that, the maximum numbers of the sequential hydrogen (oxygen) chemisorption on Fe 1 to Fe 4 clusters can be 11 to 28 (only 5 to 11). Using ab initio molecular dynamics, different kinds of hydrogen diffusion behaviors are found in the Fe H systems, and two main types of Fe O bonds are addressed in the stable Fe O systems. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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