Abstract
The size-dependent electronic, structural, and magnetic properties of Mn-doped gold clusters have been systematically investigated by using relativistic all-electron density functional theory with generalized gradient approximation. A number of new isomers are obtained for neutral MnAu n (n = 1-16) clusters to probe the structural evolution. The two-dimensional (2D) to three-dimensional (3D) transition occurs in the size range n = 7-10 with manifest structure competitions. From size n = 13 to n = 16, the MnAu n prefers a gold cage structure with Mn atom locating at the center. The relative stabilities of the ground-state MnAu n clusters show a pronounced odd-even oscillation with the number of Au atoms. The magnetic moments of MnAu n clusters vary from 3 μ B to 6 μ B with the different cluster size, suggesting that nonmagnetic Au n clusters can serve as a flexible host to tailor the dopant's magnetism, which has potential applications in new nanomaterials with tunable magnetic properties.
| Original language | English |
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| Pages (from-to) | 1493-1502 |
| Number of pages | 10 |
| Journal | Journal of Physical Chemistry A |
| Volume | 116 |
| Issue number | 6 |
| DOIs | |
| State | Published - 16 Feb 2012 |