Ribas-Arino Jordi, Baruah Tunna, Pederson Mark R
Departament de Química Física, Facultat de Química and CER Química Teòrica, Parc Científic, Universitat de Barcelona, Avenida Diagonal 647, Barcelona E-08028, Spain.
J Chem Phys. 2005 Jul 22;123(4):044303. doi: 10.1063/1.1961367.
We present the results of our all-electron density-functional calculations on the electronic structure and magnetic anisotropy energy of the [Fe4(OMe)6(dpm)6] and [Fe4(thme)2(dpm)6] molecular clusters, which are experimentally found to behave as single-molecule magnets. The calculated magnetic anisotropy energy barriers are 2.65 and 15.8 K, respectively, which agree with the experimental data. We also present a density-functional study on the effect of the structure distortions on the magnetic anisotropy of the [Fe(H2O)6]3+ complex. This study, together with an analysis of the projected anisotropies of each iron ion in both molecular clusters, allows us to qualitatively understand why the magnetic anisotropy energy (MAE) barrier of the second single-molecule magnet (SMM) is larger than the MAE of the first SMM.
我们展示了对[Fe4(OMe)6(dpm)6]和[Fe4(thme)2(dpm)6]分子簇的电子结构和磁各向异性能量进行全电子密度泛函计算的结果,实验发现这些分子簇表现为单分子磁体。计算得到的磁各向异性能量势垒分别为2.65 K和15.8 K,与实验数据相符。我们还展示了一项关于结构畸变对[Fe(H2O)6]3+配合物磁各向异性影响的密度泛函研究。这项研究,连同对两个分子簇中每个铁离子的投影各向异性的分析,使我们能够定性地理解为什么第二个单分子磁体(SMM)的磁各向异性能量(MAE)势垒大于第一个SMM的MAE。