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Two C3-symmetric Dy3 III complexes with triple di-μ-methoxo-μ-phenoxo bridges, magnetic ground state, and single-molecule magnetic behavior

机译:两个C3对称的Dy3 III配合物,具有三重di-μ-甲氧基-μ-phenoxo桥,磁性基态和单分子磁性行为

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摘要

Two series of isostructural C3-symmetric Ln3 complexes Ln3·[BPh4] and Ln3·0. 33[Ln(NO3)6] (in which LnIII=Gd and Dy) have been prepared from an amino-bis(phenol) ligand. X-ray studies reveal that LnIII ions are connected by one μ2-phenoxo and two μ3-methoxo bridges, thus leading to a hexagonal bipyramidal Ln3O5 bridging core in which LnIII ions exhibit a biaugmented trigonal-prismatic geometry. Magnetic susceptibility studies and ab initio complete active space self-consistent field (CASSCF) calculations indicate that the magnetic coupling between the DyIII ions, which possess a high axial anisotropy in the ground state, is very weakly antiferromagnetic and mainly dipolar in nature. To reduce the electronic repulsion from the coordinating oxygen atom with the shortest Dy-O distance, the local magnetic moments are oriented almost perpendicular to the Dy3 plane, thus leading to a paramagnetic ground state. CASSCF plus restricted active space state interaction (RASSI) calculations also show that the ground and first excited state of the DyIII ions are separated by approximately 150 and 177 cm-1, for Dy3·[BPh 4] and Dy3·0.33[Dy(NO3)6], respectively. As expected for these large energy gaps, Dy3· [BPh4] and Dy3·0.33[Dy(NO3)6] exhibit, under zero direct-current (dc) field, thermally activated slow relaxation of the magnetization, which overlap with a quantum tunneling relaxation process. Under an applied Hdc field of 1000 Oe, Dy 3·[BPh4] exhibits two thermally activated processes with Ueff values of 34.7 and 19.5 cm-1, whereas Dy 3·0.33[Dy(NO3)6] shows only one activated process with Ueff=19.5 cm-1. © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:两个系列的同构C3对称Ln3络合物Ln3·[BPh4]和Ln3·0。由氨基-双(苯酚)配体制备了33 [Ln(NO3)6](其中LnIII = Gd和Dy)。 X射线研究表明,LnIII离子通过一个μ2-phenoxo桥和两个μ3-methoxo桥连接,从而形成一个六边形双锥体Ln3O5桥接核,其中LnIII离子显示出双三角棱镜的几何形状。磁化率研究和从头算起的完整活动空间自洽场(CASSCF)计算表明,DyIII离子之间的磁耦合在基态下具有很高的轴向各向异性,其反铁磁性很弱,并且本质上主要是偶极子。为了减少来自具有最短Dy-O距离的配位氧原子的电子排斥,局部磁矩的取向几乎垂直于Dy3平面,从而导致顺磁基态。 CASSCF加有限活动空间状态相互作用(RASSI)计算还显示,对于Dy3·[BPh 4]和Dy3·0.33 [Dy(NO3),DyIII离子的基态和第一激发态之间的距离约为150和177 cm-1。 )6]。如对这些大的能隙所期望的,Dy3·[BPh4]和Dy3·0.33 [Dy(NO3)6]在零直流(dc)场下表现出热激活的磁化慢弛豫,与量子隧穿重叠松弛过程。在施加的1000 Oe Hdc磁场下,Dy 3·[BPh4]表现出两个热激活过程,Ueff值分别为34.7和19.5 cm-1,而Dy 3·0.33 [Dy(NO3)6]仅显示一个激活过程,Ueff值= 19.5厘米-1。 ©2014 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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