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阳离子Au(n)Cu(m)+团簇及其单羰基化合物的密度泛函研究。

A density functional study on cationic Au(n)Cu(m)+ clusters and their monocarbonyls.

作者信息

Zhao Yu, Li Zhenyu, Yang Jinlong

机构信息

Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei, Anhui, 230026, China.

出版信息

Phys Chem Chem Phys. 2009 Apr 7;11(13):2329-34. doi: 10.1039/b817806b. Epub 2009 Feb 11.

Abstract

Small cationic Au(n)Cu(m)+ (n + m < or = 6) clusters and their monocarbonyls Au(n)Cu(m)CO+ have been studied by first-principles calculations. The trend for small Au clusters to form planar structures is weaker when some Au atoms are substituted by Cu atoms. A significant odd-even oscillation of the electron affinity of the cationic clusters with the number of their Au or Cu atoms is observed. CO prefers binding to Cu, which can be understood by the frontier molecular orbital theory. Its binding energy on Au(n)Cu(m)+ generally decreases with the increase of the Cu content in the cluster, which is highly related to the electron transfer between CO and the cluster. Our calculation suggests that reactive collision between CO and Au3Cu+ may lead to the dissociation of the cluster with an Au atom loss.

摘要

通过第一性原理计算研究了小阳离子Au(n)Cu(m)+(n + m ≤ 6)团簇及其单羰基化合物Au(n)Cu(m)CO+。当一些Au原子被Cu原子取代时,小Au团簇形成平面结构的趋势变弱。观察到阳离子团簇的电子亲和能随其Au或Cu原子数呈现显著的奇偶振荡。CO更倾向于与Cu结合,这可以用前线分子轨道理论来解释。其在Au(n)Cu(m)+上的结合能通常随着团簇中Cu含量的增加而降低,这与CO和团簇之间的电子转移高度相关。我们的计算表明,CO与Au3Cu+之间的反应性碰撞可能导致团簇解离并损失一个Au原子。

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