Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1863630 | Physics Letters A | 2010 | 7 Pages |
Abstract
First-principles calculations have been applied to investigate the role of Ni-doping in modifying the geometric and electronic structures of Cun clusters (n=1–12n=1–12), and the chemical activity of clusters towards CO2. The results reveal that Ni-doping introduces a significant modulation of the electronic structures, such as the density of states, HOMO–LUMO gaps and the d-band centers, which dominate their chemical activities towards CO2 adsorption. Our findings contribute valuable information for high efficient Cu–Ni alloy nano-catalyst design.
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Authors
S.L. Han, Xinlian Xue, X.C. Nie, H. Zhai, F. Wang, Q. Sun, Yu Jia, S.F. Li, Z.X. Guo,