Departamento de Química, Cinvestav, Avenida Instituto Politécnico Nacional 2508 A.P. 14-740, México DF 07000, México.
J Am Chem Soc. 2011 Aug 10;133(31):12192-6. doi: 10.1021/ja203889r. Epub 2011 Jul 18.
First-principles electronic structure calculations within a gradient corrected density functional formalism have been carried out to investigate the electronic structure and magnetic properties of Pd(13) clusters. It is shown that a bilayer ground-state structure that can be regarded as a relaxed bulk fragment is most compatible with the experimental results from Stern-Gerlach measurements. An icosahedral structure, considered to be the ground state in numerous previous studies, is shown to be around 0.14 eV above the ground state. A detailed analysis of the molecular orbitals reveals the near degeneracy of the bilayer or icosahedral structures is rooted in the stabilization by p- or d-like cluster orbitals. The importance of low-lying spin states in controlling the electronic and magnetic properties of the cluster is highlighted.
基于梯度修正密度泛函理论,我们进行了第一性原理电子结构计算,以研究 Pd(13)团簇的电子结构和磁性。结果表明,双层基态结构可以视为弛豫的体相碎片,与 Stern-Gerlach 测量的实验结果最为吻合。在之前的大量研究中,被认为是基态的二十面体结构,其能量比基态高出约 0.14 eV。对分子轨道的详细分析表明,双层或二十面体结构的近简并性源于 p 或 d 类团簇轨道的稳定化。低能自旋态在控制团簇的电子和磁性方面的重要性被强调。