Ge Yu, Li Dawei, Wang Guoqing, Cui Yanfeng, Najib Muhammad Saleem, Li Yahong, Wang Bao-Lin
College of Chemistry, Chemical Engineering and Materials Science Soochow University, Suzhou, 215123, P.R. China.
College of Environmental Engineering, University of Waterloo, Waterloo, N2L 3G1, Canada.
Chem Asian J. 2019 Aug 16;14(16):2846-2852. doi: 10.1002/asia.201900636. Epub 2019 Jul 24.
Three dinuclear dysprosium(III) complexes, [Dy L (O CPh) ]⋅2 MeOH (1), [Dy L {(2-NO )O CPh} ] (2), and [Dy L {(2-OH)O CPh} ]⋅MeOH⋅MeCN (3) (H L=N ,N -bis(4-chlorosalicyladehyde)diethylenetriamine), have been synthesized and structurally characterized. Complexes 1-3 possess similar Ln cores and differ in substituents at the benzyl rings of benzoates. Direct current (dc) magnetic susceptibility studies in the 2-300 K range showed weak antiferromagnetic interactions between two dysprosium(III) ions in 1-3. The alternating current (ac) magnetic susceptibility measurements indicated that they all exhibited SMM behavior. The strategic attachment of the -NO group (in 2) and the -OH functionality (in 3) on the skeleton of the benzoic acid led to subtle variations of the bond lengths and bond angles in the coordination environments of the central dysprosium(III) ions, consequently resulting in the enhancement of the energy barriers for 2 and 3. Complete-active-space self-consistent field (CASSCF) calculations were employed to rationalize the experimental outcomes. Theoretical calculations confirm the existence of antiferromagnetic interactions in 1-3, and the calculated dc magnetic susceptibility data agree well with those obtained experimentally. The computational results reveal more axial g tensors, as well as higher first excited Kramers doublets in 2 and 3; thus resulting in higher energy barriers in compounds 2 and 3.
合成并表征了三种双核镝(III)配合物,[DyL(OCPh)]·2MeOH(1)、[DyL{(2-NO)OCPh}](2)和[DyL{(2-OH)OCPh}]·MeOH·MeCN(3)(HL = N,N-双(4-氯水杨醛)二乙烯三胺)。配合物1-3具有相似的Ln核,苯甲酸苄环上的取代基不同。在2-300 K范围内的直流(dc)磁化率研究表明,1-3中两个镝(III)离子之间存在弱反铁磁相互作用。交流(ac)磁化率测量表明它们都表现出单分子磁体(SMM)行为。-NO基团(在2中)和-OH官能团(在3中)在苯甲酸骨架上的策略性连接导致中心镝(III)离子配位环境中键长和键角的细微变化,从而导致2和3的能垒增强。采用完全活性空间自洽场(CASSCF)计算来合理化实验结果。理论计算证实了1-3中反铁磁相互作用的存在,计算得到的直流磁化率数据与实验数据吻合良好。计算结果揭示了2和3中更多的轴向g张量以及更高的第一激发克莱默斯双重态;因此导致化合物2和3中具有更高的能垒。