Ke Hongshan, Yang Yongsheng, Wei Wen, Jiang Youdong, Zhang Yi-Quan, Xie Gang, Chen Sanping
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an 710069, P. R. China.
Dalton Trans. 2020 Aug 14;49(30):10594-10602. doi: 10.1039/d0dt02139c. Epub 2020 Jul 21.
We present the syntheses, crystal structures, magnetic properties and theoretical calculations performed on two dinuclear dysprosium complexes with formulas Dy(L)(L)(CHCHOH)(CHOH) (1) and Dy(L)(L)(CHOH)·1.5CHOH (2). Single-crystal X-ray structural data analyses showed that both complexes contain two nonequivalent dysprosium ions bridged by two phenolate oxygen atoms. In both complexes, each dysprosium site adopts a NO coordination constitution and triangular dodecahedron (D) configuration geometry with different distortion degree. Both complexes display single-molecule magnet behavior manifested by frequency-dependent out-of-phase alternating current susceptibility signal peaks under a zero-applied dc field. The effective energy barrier of the magnetization reversal and relaxation time values are 61 K, 7.1 × 10 s (1) and 51 K, 1.9 × 10 s (2), respectively. Theoretical calculations revealed a drastic discrepancy between the orientations of the anisotropy axis of the Dy2 ion observed in these two dinuclear complexes, resulting from the different spatial arrangements of the mixed ligands in the core structure.
我们展示了对两种双核镝配合物进行的合成、晶体结构、磁性和理论计算,其化学式分别为Dy(L)(L)(CHCHOH)(CHOH) (1)和Dy(L)(L)(CHOH)·1.5CHOH (2)。单晶X射线结构数据分析表明,两种配合物均包含由两个酚氧原子桥连的两个不等价镝离子。在这两种配合物中,每个镝位点均采用NO配位结构和具有不同畸变程度的三角十二面体(D)构型几何形状。在零外加直流场下,两种配合物均表现出单分子磁行为,表现为频率依赖的异相交流磁化率信号峰。磁化反转的有效能垒和弛豫时间值分别为61 K、7.1×10 s (1)和51 K、1.9×10 s (2)。理论计算表明,这两种双核配合物中观察到的Dy2离子各向异性轴的取向存在显著差异,这是由于核心结构中混合配体的空间排列不同所致。