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镝(III)配合物单分子磁体行为的结构和电子依赖性

Structural and electronic dependence of the single-molecule-magnet behavior of dysprosium(III) complexes.

作者信息

Campbell Victoria E, Bolvin Hélène, Rivière Eric, Guillot Regis, Wernsdorfer Wolfgang, Mallah Talal

机构信息

ICMMO, Université de Paris Sud , 15 rue Georges Clemenceau, 91405 Orsay, France.

出版信息

Inorg Chem. 2014 Mar 3;53(5):2598-605. doi: 10.1021/ic402950j. Epub 2014 Feb 17.

Abstract

We investigate and compare the magnetic properties of two isostructural Dy(III)-containing complexes. The Dy(III) ions are chelated by hexadentate ligands and possess two apical bidendate nitrate anions. In dysprosium(III) N,N'-bis(imine-2-yl)methylene-1,8-diamino-3,6-dioxaoctane (1), the ligand's donor atoms are two alkoxo, two pyridine, and two imine nitrogen atoms. Dysprosium(III) N,N'-bis(amine-2-yl)methylene-1,8-diamino-3,6-dioxaoctane (2) is identical with 1 except for one modification: the two imine groups have been replaced by amine groups. This change has a minute effect on the structure and a larger effect the magnetic behavior. The two complexes possess slow relaxation of the magnetization in the presence of an applied field of 1000 Oe but with a larger barrier for reorientation of the magnetization for 1 (Ueff/kB = 50 K) than for 2 (Ueff/kB = 34 K). First-principles calculations using the spin-orbit complete active-space self-consistent-field method were performed and allowed to fit the experimental magnetization data. The calculations gave the energy spectrum of the 2J + 1 sublevels issued from the J = 15/2 free-ion ground state. The lowest-lying sublevels were found to have a large contribution of MJ = ±15/2 for 1, while for 2, MJ = ±13/2 was dominant. The observed differences were attributed to a synergistic effect between the electron density of the ligand and the small structural changes provoked by a slight alteration of the coordination environment. It was observed that the stronger ligand field (imine) resulted in complex 1 with a larger energy barrier for reorientation of the magnetization than 2.

摘要

我们研究并比较了两种同构含镝(III)配合物的磁性。镝(III)离子由六齿配体螯合,并拥有两个顶端双齿硝酸根阴离子。在镝(III)N,N'-双(亚胺-2-基)亚甲基-1,8-二氨基-3,6-二氧杂辛烷(1)中,配体的供体原子为两个烷氧基、两个吡啶和两个亚胺氮原子。镝(III)N,N'-双(胺-2-基)亚甲基-1,8-二氨基-3,6-二氧杂辛烷(2)与1相同,只是有一处改动:两个亚胺基团被胺基团取代。这一变化对结构影响微小,但对磁行为影响较大。在1000奥斯特的外加磁场存在下,这两种配合物都表现出磁化强度的缓慢弛豫,但配合物1(有效能垒Ueff/kB = 50 K)的磁化重取向能垒比配合物2(Ueff/kB = 34 K)更大。使用自旋轨道完全活性空间自洽场方法进行了第一性原理计算,并使其拟合实验磁化数据。计算得出了J = 15/2自由离子基态产生的2J + 1个能级的能谱。发现对于配合物1,最低能级对MJ = ±15/2贡献较大,而对于配合物2,MJ = ±13/2占主导。观察到的差异归因于配体电子密度与配位环境轻微改变引起的小结构变化之间的协同效应。据观察,较强的配体场(亚胺)导致配合物1的磁化重取向能垒比配合物2更大。

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