Zhang Xiuyun, Wang Jinlan
Department of Physics, Southeast University, Nanjing 211189, PR China.
J Phys Chem A. 2008 Jan 17;112(2):296-304. doi: 10.1021/jp076647o. Epub 2007 Dec 18.
The structural, electronic, and magnetic properties of cobalt-benzene complexes (Co(n)Bz(m), n, m = 1-4, m = n, n + 1) have been explored within the framework of an all electron gradient-corrected density functional theory. Sandwich conformations are energetically preferred for the smallest series of n, m = 1-2, rice-ball structures are for larger sizes with n > or = 3, and both motifs coexist for Co(2)Bz(3). The rice-ball clusters of (3, 3) and (4, 4) are more stable than (3, 4) having a relative large binding energy and HOMO-LUMO gap whereas smaller sandwich clusters have highly kinetic stability at (n, n + 1). The computed ionization potentials and magnetic moments of Co(n)Bz(m) are in good agreement with the measured values overall; the present results suggest that the measured moments are averages reflecting mixtures of a few nearly isoenergetic isomers having different spin states. The magnetism of the complexes mainly comes from Co atoms with a Bz molecule only possessing very small moments. Ferromagnetic ordering is energetically preferred for smaller complexes with n = 1-3 whereas antiferromagnetic ordering is favored for (4, 4). The relatively smaller moments of Con clusters in a Bz matrix indicate that Bz molecules play an attenuation role to the magnetism of the complexes.
在全电子梯度校正密度泛函理论框架内,研究了钴 - 苯配合物(Co(n)Bz(m),n, m = 1 - 4,m = n, n + 1)的结构、电子和磁性性质。对于n, m = 1 - 2的最小系列,三明治构象在能量上更有利;对于n≥3的较大尺寸,存在饭团结构;而对于Co(2)Bz(3),两种结构共存。(3, 3)和(4, 4)的饭团簇比(3, 4)更稳定,具有相对较大的结合能和HOMO - LUMO能隙,而较小的三明治簇在(n, n + 1)时具有较高的动力学稳定性。计算得到的Co(n)Bz(m)的电离势和磁矩总体上与测量值吻合良好;目前的结果表明,测量的磁矩是反映具有不同自旋态的一些近等能异构体混合物的平均值。配合物的磁性主要来自Co原子,Bz分子仅具有非常小的磁矩。对于n = 1 - 3的较小配合物,铁磁有序在能量上更有利,而对于(4, 4),反铁磁有序更受青睐。Bz基质中Con簇相对较小的磁矩表明,Bz分子对配合物的磁性起衰减作用。