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INVESTIGATION OF THE ADSORPTION AND DIFFUSION OF HYDROGEN IN IRON CLUSTERS BY THE METHOD OF DENSITY FUNCTIONAL

机译:密度泛函法研究铁团簇中氢的吸附和扩散

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摘要

We construct a cluster model of interaction of atomic hydrogen with α- and γ -iron surfaces and perform quantum-chemical computations of the Fe-H system by the method of density functional with the RPBE-GGA exchange-correlation functional. We obtain the curves of the potential energy of interaction of atomic hydrogen with iron clusters of BCC and FCC structures and establish the activation barriers of its adsorption, penetration into the subsurface layer, and migration between tetrahedral and octahedral positions of clusters. The energies of dissolution of atomic hydrogen at different absorption sites of the clusters are computed and the stable energy states of hydrogen in the octahedral positions of FCC iron clusters are revealed. We analyze the charge state of atomic hydrogen both on the surface and in the bulk sites of the clusters and confirm the mechanism of partial charge transfer in the iron-hydrogen system.
机译:我们建立了原子氢与α-和γ-铁表面相互作用的簇模型,并通过密度泛函和RPBE-GGA交换相关函数的方法对Fe-H体系进行了量子化学计算。我们获得了原子氢与BCC和FCC结构的铁簇相互作用的势能曲线,并建立了其吸附,渗透到地下层以及簇的四面体和八面体位置之间迁移的激活势垒。计算了原子氢在团簇不同吸收位点的溶解能,揭示了FCC铁团簇八面体位置氢的稳定能态。我们分析了原子团在表面和团簇中的氢原子的电荷状态,并确定了铁-氢系统中部分电荷转移的机理。

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