Insights into the structural evolution and electronic properties of deficient-electron sodium chloride clusters
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Published:2020-09-30
Issue:9
Volume:10
Page:1404-1411
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ISSN:2158-5849
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Container-title:Materials Express
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language:en
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Short-container-title:mat express
Author:
Guo Shihui,Zhang Yu,Wang Ping,Tang Huang,Dai Wei,Li Genquan,Bi Jie,Zhu Benchao
Abstract
We have explored the structural evolution and electronic properties of cationic sodium chloride (NaCl)+n (n = 1–8) clusters. The global minimum of cationic (NaCl)+n clusters have been extensively searched using CALYPSO method
combined with DFT calculations. The structural evolution of (NaCl)+n clusters can be divided into three stages: linear structure, planar ring-like structure and three-dimensional structure. It is worth to note that cuboid structure is more common in the cluster series
as the cluster size increases. (NaCl)+4 clusters is identified as "magic number" clusters by means of the relative stabilities analyses. The following chemical bonding analysis indicate that the stability of (NaCl)+ 4cluster mainly comes from the interaction between Na
3s and Cl 3p atomic orbitals.
Publisher
American Scientific Publishers
Subject
General Materials Science
Cited by
1 articles.
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