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First-principles study of the electronic structures of icosahedral Ti_N(N= 13,19,43,55) clusters

机译:二十面体Ti_N(N = 13,19,43,55)团簇电子结构的第一性原理研究

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We have studied the electronic structures of icosahedral Ti_N clusters (N=13,19,43,and 55) by using a real-space first-principles cluster method with generalized gradient approximation for exchange-correlation potential.The hexagonal close-packed and fcc close-packed clusters have been studied additionally for comparisons.It is found that the icosahedral structures are the most stable ones except for Ti_(43),where fcc close-packed structure is favorable in energy.We present and discuss the variation of bond length,the features of the highest occupied molecular orbitals and the lowest unoccupied molecular orbital,the evolution of density of states,and the magnetic moment in detail.The results are in good agreement with the predictions from the collision-induced dissociation and size-selected anion photoelectron spectroscopy experiments.
机译:我们使用具有梯度梯度逼近的实空间第一原理簇方法研究了二十面体Ti_N簇(N = 13、19、43和55)的电子结构,其交换相关势为六方密堆积和fcc我们还研究了紧密堆积的团簇进行比较。发现二十面体结构是最稳定的,除了Ti_(43),其中FCC紧密堆积的结构在能量上是有利的。我们提出并讨论了键长的变化,最高占据分子轨道和最低未占据分子轨道的特征,状态密度的演变以及磁矩的详细信息。结果与碰撞诱导的解离和尺寸选择阴离子的预测非常吻合光电子能谱实验。

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