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Continuation calculations of boron- (aluminum-, titanium-, and nickel-) doped La-13 clusters

机译:硼(铝,钛和镍)掺杂的La-13团簇的连续计算

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In this work, we have calculated boron-, aluminum-, titanium-, and nickel-doped La-13 clusters DMOL method based on the density-functional theory. Two doping modes are employed: surface and center doping. The boron, aluminum, and nickel atoms prefer to occupy the surface sites while the titanium atom prefers to occupy the center site. The doped La-13 clusters with these four kinds of atoms have lower binding energy than pure La-13 clusters. The icosahedral isomers are of lower binding energy than cubotahedral and decahedral isomers for La12B-1, La12Al-1, and La12Ni, while doping makes the cubotahedral La12Ti stable with a binding energy a little lower than icosahedral La12Ti. There are electronic shell effects in icosahedral La12B-1 and La12Al-1. The icosahedral La12B-1 is promising to be formed during the doped process experimentally. Furthermore, we have also discussed the distorted structures of center doping by bond lengths, density of states, and charge transfers. (c) 2005 American Institute of Physics.
机译:在这项工作中,我们基于密度泛函理论计算了硼,铝,钛和镍掺杂的La-13团簇DMOL方法。采用两种掺杂方式:表面掺杂和中心掺杂。硼,铝和镍原子更喜欢占据表面位置,而钛原子更喜欢占据中心位置。具有这四种原子的掺杂La-13团簇的结合能比纯La-13团簇低。对于La12B-1,La12Al-1和La12Ni,二十面体异构体的结合能比立方二十面体和十面体异构体低,而掺杂使立方六面体La12Ti稳定,结合能比二十面体La12Ti低。二十面体La12B-1和La12Al-1具有电子壳效应。二十面体La12B-1有望在掺杂过程中通过实验形成。此外,我们还通过键长,态密度和电荷转移来讨论中心掺杂的扭曲结构。 (c)2005年美国物理研究所。

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