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Ag 掺杂对小过渡金属团簇的作用:基于第一性原理模拟的研究

Role of Ag-doping in small transition metal clusters from first-principles simulations.

机构信息

School of Physics and Engineering, Zhengzhou University, Zhengzhou 450001, People's Republic of China.

出版信息

J Chem Phys. 2009 Nov 14;131(18):184301. doi: 10.1063/1.3261728.

Abstract

First-principles calculations are used to systematically investigate the geometric and electronic structures of both pure TM(n) (n=2-4) and Ag-modulated AgTM(n-1) (n=2-4; 3d-transition metal (TM): from Sc to Cu; 4d-TM: from Y to Ag elements) clusters. Some new ground state structures are found for the pure TM(n) clusters, such as a low symmetry configuration for Cr(3), which is found to be about 0.20 eV more stable than the previously reported C(2v) symmetry. In the most cases, Ag-doping can significantly elongate the bond lengths of the clusters and induce geometric distortions of the small clusters from the high dimensional to the low dimensional configurations. Importantly, introduction of Ag significantly changes the electronic structures of the small clusters and modulates the density of states in the proximity of the Fermi levels, which also varies with the size and the type of the cluster. The results contribute to future design of effective bimetallic alloy Ag/TM catalysts.

摘要

采用第一性原理计算方法系统地研究了纯 TM(n)(n=2-4)和 Ag 调制的 AgTM(n-1)(n=2-4;3d 过渡金属(TM):从 Sc 到 Cu;4d-TM:从 Y 到 Ag 元素)团簇的几何和电子结构。对于纯 TM(n)团簇,我们发现了一些新的基态结构,例如 Cr(3)的低对称构型,其稳定性比先前报道的 C(2v)对称性高出约 0.20 eV。在大多数情况下,Ag 掺杂可以显著延长团簇的键长,并诱导小团簇从高维到低维构型的几何变形。重要的是,Ag 的引入显著改变了小团簇的电子结构,并调节了费米能级附近的态密度,这也随团簇的尺寸和类型而变化。这些结果有助于未来设计有效的双金属合金 Ag/TM 催化剂。

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