Theory of Nanomaterials Group, Katholieke Universiteit Leuven, Celestijnenlaan 200F, 3001, Leuven, Belgium.
Department of Chemistry, National University of Singapore, Block S8 Level 3, 3 Science Drive 3, Singapore, 117543, Singapore.
Chemistry. 2018 Nov 7;24(62):16652-16661. doi: 10.1002/chem.201803821. Epub 2018 Oct 17.
The magnetism and magnetization blocking of a series of [Fe Dy (OH) (teaH) (RC H COO) ] complexes was investigated, in which teaH =triethanolamine and R=meta-CN (1), para-CN (2), meta-CH (3), para-NO (4) and para-CH (5), by combining ab initio calculations and EPR measurements. The results of broken-symmetry DFT calculations show that in all compounds the Fe-Fe exchange interaction is antiferromagnetic and stronger by far than the Fe-Dy and Dy-Dy interactions. As a result, the lowest two exchange doublets probed by EPR spectroscopy mostly originate from the Ising interaction of the dysprosium ions in all compounds. A correct quantitative description of the splitting of these two doublets requires, however, an explicit account of the Fe-Dy and Fe-Fe interactions. Due to the inversion symmetry of the complexes, the doublets under consideration are described by a collinear Ising exchange interaction. This picture is also supported by the EPR spectra, which could be simulated with parameters close to those extracted from the calculations. The magneto-structural analysis shows an increase of the antiferromagnetic Fe-Fe exchange interaction with increasing Fe-O-Fe angle and Fe-Fe distance. For the Dy-Fe interaction, the opposite tendency is observed, that is, a decrease of antiferromagnetic exchange coupling with increasing Dy-O-Fe angle and Dy-Fe distance. The transversal g factors extracted from the ab initio calculations have values in the range of 0.01-0.2, testifying to the lack of high axiality of the ground state of the dysprosium ions. This explains the lack/poor single-molecule magnetic behavior of this series of compounds at the investigated temperatures of a few Kelvin. Due to a very small gap (fractions of a wavenumber) between the ground and first-excited exchange doublet, relaxation takes place by magnetic moment reversal at individual dysprosium sites in the considered temperature domain.
我们研究了一系列[FeDy(OH)(teaH)(RC H COO)]配合物的磁性和磁化强度阻断,其中 teaH=三乙醇胺,R=间-CN(1)、对-CN(2)、间-CH(3)、对-NO(4)和对-CH(5),通过结合从头算计算和 EPR 测量。打破对称的 DFT 计算结果表明,在所有化合物中,Fe-Fe 交换相互作用是反铁磁性的,而且远远强于 Fe-Dy 和 Dy-Dy 相互作用。因此,EPR 光谱探测到的最低两个交换双峰主要来源于所有化合物中镝离子的 Ising 相互作用。然而,要正确定量描述这两个双峰的分裂,需要明确考虑 Fe-Dy 和 Fe-Fe 相互作用。由于配合物的反演对称性,所考虑的双峰由共线 Ising 交换相互作用描述。这一图像也得到了 EPR 光谱的支持,EPR 光谱可以用接近从计算中提取的参数进行模拟。磁结构分析表明,随着 Fe-O-Fe 角和 Fe-Fe 距离的增加,反铁磁 Fe-Fe 交换相互作用增加。对于 Dy-Fe 相互作用,观察到相反的趋势,即随着 Dy-O-Fe 角和 Dy-Fe 距离的增加,反铁磁交换耦合减小。从从头算计算中提取的横向 g 因子的值在 0.01-0.2 范围内,证明基态镝离子轴向性不足。这解释了在研究的几个开尔文温度下,该系列化合物缺乏/缺乏单分子磁行为的原因。由于基态和第一激发交换双峰之间的间隙非常小(分数个波数),在考虑的温度范围内,通过单个镝位点的磁矩反转发生弛豫。