Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7920241 | Journal of Physics and Chemistry of Solids | 2018 | 32 Pages |
Abstract
Using density-functional theory, a systematic theoretical study on the structural and electronic properties of Tin-xAlx (nâ¯=â¯2-8, 13, xâ¯=â¯0-n) clusters has been performed. Tin-xAlx (nâ¯=â¯2-8, xâ¯=â¯1-n-1) clusters often employ the substitution patterns based on the structures of pure Tin cluster, while all Ti13-xAlx (xâ¯=â¯0-13) clusters adopt the icosahedral motif. The preference of Ti (Al) atom for high coordination number site experiences a transition with size increasing. In the range of nâ¯=â¯5, 6, the preference for high CN site is Ti atom, while for medium size, e.g., nâ¯=â¯13, Al atom. The clusters with around 7-8 atoms might represent a region of transition. The transition originates from the valent transition of Al atom from one to three. Ti2Al2, TiAl4, Ti4Al2, Ti4Al3, and Ti4Al4 clusters are the most stable ones for a given size when comparing with all possible compositions. TiAl4 cluster possesses the extraordinary stability originating from aromaticity.
Related Topics
Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
Houqian Sun, Wenjie Zhang, Ning Xu,