| Article ID | Journal | Published Year | Pages | File Type |
|---|---|---|---|---|
| 5375265 | Chemical Physics | 2009 | 6 Pages |
Abstract
Constant-temperature molecular dynamics simulations and the Gupta-type many-body interatomic potential are used to study the melting behaviors of CoN (NÂ =Â 13, 14, 38, 55, 56) clusters. The atomic equivalence indexes are used to describe the structural changes of clusters at different temperatures. Other quantities like the Lindemann index, the heat capacity and caloric curve are also employed. The lag phenomena (the rapid change of Lindemann index is not consistent with that of the heat capacity curve during the cluster melting) are discussed in detail for the Co13 and Co14 clusters. Our results show that the Lindemann index fails to capture the melting transition while the heat capacity does for the Co13 or Co14 clusters. All these clusters show premelting behaviors and the surface melting are found for the Co14 and Co56 clusters. The Co38 cluster undergoes distinct isomerization transitions prior to its full melting.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Shuwei Lu, Jun Zhang, Haiming Duan,
