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Structural, energetic, and electronic properties of hydrogenated titanium clusters

机译:氢化钛簇的结构,能量和电子性质

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Hydrogen undergoes dissociative chemisorption on small titanium clusters. How the electronic structure of the cluster changes as a function of the number of adsorbed hydrogen atoms is an important issue in nanocatalysis and hydrogen storage. In this paper, a detailed theoretical investigation of the structural, energetic, and electronic properties of the icosahedral Ti-13 cluster is presented as a function of the number of adsorbed hydrogen atoms. The results show that hydrogen loaded Ti13H20 and Ti13H30 clusters are exceptionally stable and are characterized by hydrogen multicenter bonds. In Ti13H20, the dissociated hydrogen atoms are bound to each of the 20 triangular faces of Ti-13, while in Ti13H30, they are bound to the 30 Ti-Ti edges of Ti-13. Consequently, the chemisorption and desorption energies of the Ti13H20 (1.93 eV, 3.10 eV) are higher than that of Ti13H30 (1.13 eV, 1.95 eV). While increased hydrogen adsorption leads to an elongation of the Ti-Ti bonds, there is a concomitant increase in the electrostatic interaction between the dissociated hydrogen atoms and the Ti-13 cluster. This enhanced interaction results from the participation of the subsurface titanium atom at higher hydrogen concentrations. Illustrative results of hydrogen saturation on the larger icosahedral Ti-55 cluster are also discussed. The importance of these results on hydrogen saturated titanium clusters in elucidating the mechanism of hydrogen adsorption and desorption in titanium doped complex metal hydrides is discussed. (c) 2008 American Institute of Physics.
机译:氢在小的钛簇上经历解离化学吸附。团簇的电子结构如何根据吸附的氢原子数变化是纳米催化和氢存储中的重要问题。在本文中,对二十面体Ti-13团簇的结构,能量和电子性质进行了详细的理论研究,该研究是氢原子吸附量的函数。结果表明,氢负载的Ti13H20和Ti13H30团簇非常稳定,并具有氢多中心键的特征。在Ti13H20中,解离的氢原子与Ti-13的20个三角形面中的每个键相连,而在Ti13H30中,它们与Ti-13的30个Ti-Ti边缘键合。因此,Ti13H20的化学吸附和解吸能(1.93 eV,3.10 eV)高于Ti13H30(1.13 eV,1.95 eV)。尽管增加的氢吸附导致Ti-Ti键的延长,但解离的氢原子与Ti-13团簇之间的静电相互作用也随之增加。这种增强的相互作用是由于较高的氢浓度下地下钛原子的参与。还讨论了较大的二十面体Ti-55团簇上氢饱和的示例性结果。讨论了这些结果对氢饱和钛簇的重要性,以阐明氢在钛掺杂复合金属氢化物中的吸附和解吸机理。 (c)2008年美国物理研究所。

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