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内嵌碱金属C中的笼状电子态和分裂电子态

Caged-electron states and split-electron states in the endohedral alkali C.

作者信息

Yang Yi-Fan, Cederbaum Lorenz S

机构信息

Theoretical Chemistry, Institute of Physical Chemistry, University of Heidelberg, Im Neuenheimer Feld 229, D-69120 Heidelberg, Germany.

出版信息

Phys Chem Chem Phys. 2021 May 26;23(20):11837-11843. doi: 10.1039/d1cp01341f.

Abstract

The low-lying electronic states of neutral X@C60 (X = Li, Na, K, Rb) have been computed and analyzed by employing state-of-the-art high level many-electron methods. Apart from the common charge-separated states, well known to be present in endohedral fullerenes, one non-charge-separated state has been found in each of the investigated systems. In Li@C60 and Na@C60, the non-charge-separated state is a caged-electron state already discussed before for Li@C60. This indicates that the application of this low-lying state of Li@C60 discussed before is also applicable for Na@C60. In K@C60 and Rb@C60, the electronic radial distribution analysis shows that this hitherto unknown non-charge-separated state possesses a different nature from that of a caged-electron state.

摘要

通过采用最先进的高水平多电子方法,对中性X@C60(X = Li、Na、K、Rb)的低电子态进行了计算和分析。除了已知存在于内嵌富勒烯中的常见电荷分离态外,在每个研究体系中都发现了一种非电荷分离态。在Li@C60和Na@C60中,非电荷分离态是一种笼中电子态,之前已针对Li@C60进行过讨论。这表明之前讨论的Li@C60的这种低电子态的应用也适用于Na@C60。在K@C60和Rb@C60中,电子径向分布分析表明,这种迄今未知的非电荷分离态具有与笼中电子态不同的性质。

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