首页> 外文期刊>The Journal of Chemical Physics >Special stability of cationic MPb12+ clusters and superalkali character of neutral MPb12 clusters (M=B, Al, Ga, In, and Tl)
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Special stability of cationic MPb12+ clusters and superalkali character of neutral MPb12 clusters (M=B, Al, Ga, In, and Tl)

机译:阳离子MPb12 +团簇的特殊稳定性和中性MPb12团簇的超碱性(M = B,Al,Ga,In和Tl)

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The electronic structures and stabilities of cationic MPb12+ clusters (M=B, Al, Ga, In, and Tl) with 50 valence electrons are investigated within density functional theory. It is shown that, at the B3LYP/cc-pVDZ(-PP) and BPW91/cc-pVDZ(-PP) levels of theory, the structures of MPb12+ with icosahedra (I-h) symmetry are energetically favorable, and their high stabilities may arise from the closed-shell nature of the pi subsystems which are subject to the 2(N-pi+1)(2) rule with N-pi=1. In addition, the possessing of large nucleus-independent chemical shifts of the five kinds of clusters reflects the common aromatic character of these clusters. From the comparison of our studies on the binding energies and the highest occupied molecular orbital and the lowest unoccupied molecular orbital energy gaps, the cluster AlPb12+ has higher stability than the others and this is consistent with the recent mass-spectrometric discovery of Al-doped Pb-n(+) clusters, in which AlPb12+ is highly abundant. The same methods are used to search for the structures of the neutral MPb12 clusters. The calculations reveal that the most stable geometries of the BPb12 and GaPb12 clusters have I-h symmetry, the AlPb12 and InPb12 clusters have T-h symmetry, and the TlPb12 cluster has C-5v symmetry. Furthermore, the vertical ionization potentials of the neutral MPb12 clusters are smaller than that of some alkali atoms, indicating that the neutral MPb12 clusters possess superalkali character. (c) 2006 American Institute of Physics.
机译:在密度泛函理论中研究了具有50个价电子的阳离子MPb12 +簇(M = B,Al,Ga,In和Tl)的电子结构和稳定性。结果表明,在理论上的B3LYP / cc-pVDZ(-PP)和BPW91 / cc-pVDZ(-PP)水平上,具有二十面体(Ih)对称性的MPb12 +的结构在能量上是有利的,并且可能会出现高稳定性。从pi子系统的闭壳性质出发,它们受N(pi = 1)的2(N-pi + 1)(2)规则约束。另外,五种簇具有大的与核无关的化学位移,反映了这些簇的共同芳香特性。从我们对结合能,最高占据分子轨道和最低未占据分子轨道能隙的研究比较来看,AlPb12 +团簇比其他原子团具有更高的稳定性,这与最近发现的掺杂Al的Pb的质谱一致-n(+)簇,其中AlPb12 +非常丰富。使用相同的方法搜索中性MPb12簇的结构。计算表明,BPb12和GaPb12簇的最稳定几何形状具有I-h对称性,AlPb12和InPb12簇具有T-h对称性,而TlPb12簇具有C-5v对称性。此外,中性MPb12团簇的垂直电离势小于一些碱原子的垂直电离势,表明中性MPb12团簇具有超强碱特性。 (c)2006年美国物理研究所。

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