| Literature DB >> 35497141 |
Xiaochen Wu1, Yang Gao1, Weiyu Xie1, Zhigang Wang1.
Abstract
Superatoms with high-Z elements have novel physicochemical properties, and a comprehensive and thorough view of their bonding properties plays a crucial role in the design of superatoms. Now, energy decomposition analysis shows increasingly prominent performance for understanding inter- and intra-molecular interactions, so the bonding properties of typical superatoms with high-Z elements, Th@Au14, have been investigated here. It is found that under different electron occupation types of the fragments, the electrostatic interaction energy, polarization, and exchange repulsion energy change significantly in their intramolecular interaction energy components, resulting in quantitative or even qualitative differences in their main interaction energy. This indicates that the bonding properties of fragments are related to their electronic structures, and even has extraordinary reference value for the future regulation and control of interactions in superatoms with high-Z elements, which has great significance for superatom development. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35497141 PMCID: PMC9051896 DOI: 10.1039/d0ra01644f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1A diagram showing the structures and properties of Th@Au14, including geometric structure, orbital energy levels and charge density difference, in which the possible orbitals of electron occupation have been listed, such as 6d, 37A1 and 25B1. The red solid lines and dotted lines represent the contribution of Frag. 1 and Frag. 2 to the Th@Au14 orbitals, respectively. In addition, in the lower left corner is the charge density difference of Th@Au14. Red and blue represent, respectively, losing and gaining electrons.
Fig. 2The electron occupations of the Th atom and Au14-cage structure. A total of six electron occupations (Case 1–6) are considered. 6d and 7s are the possible orbitals occupied by valence electrons in the Th atom. 25B1, 34A1, 58E1, 34B2, 23A1 are the possible orbitals occupied by valence electrons in the Au14-cage structure.
Energy decomposition analysis of the Th atom and Au14-cage structure under different electron occupation types; all values are in eV. The values in parentheses represent the percentage of each attraction term with respect to the total attraction term
| 1 | 2 | 3 | 4 | 5 | 6 | |
|---|---|---|---|---|---|---|
| Δ | −15.34 | −14.77 | −14.68 | −14.67 | −16.17 | −23.15 |
| Δ | −48.67 (46.21%) | −48.68 (59.04%) | −48.67 (58.69%) | −48.67 (58.72%) | −39.41 (64.08%) | −67.43 (76.97%) |
| Δ | −56.66 (53.79%) | −33.77 (40.96%) | −34.26 (41.31%) | −34.22 (41.28%) | −22.09 (35.92%) | −20.17 (23.03%) |
| Δ | 89.99 | 67.68 | 68.25 | 68.22 | 45.33 | 64.45 |