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双核[CoLn](Ln = La、Gd、Tb、Dy、Ho)配合物中硫醚席夫碱配体围绕钴形成的异常扭曲的拟八面体配位环境:合成、结构及磁行为解析

Unusually Distorted Pseudo-Octahedral Coordination Environment Around Co from Thioether Schiff Base Ligands in Dinuclear [CoLn] (Ln = La, Gd, Tb, Dy, Ho) Complexes: Synthesis, Structure, and Understanding of Magnetic Behavior.

作者信息

Basak Dipmalya, Leusen Jan van, Gupta Tulika, Kögerler Paul, Bertolasi Valerio, Ray Debashis

机构信息

Department of Chemistry , Indian Institute of Technology , Kharagpur 721 302 , India.

Institute of Inorganic Chemistry , RWTH Aachen University , D-52074 Aachen , Germany.

出版信息

Inorg Chem. 2020 Feb 17;59(4):2387-2405. doi: 10.1021/acs.inorgchem.9b03259. Epub 2020 Feb 3.

Abstract

The synthesis, structural characterization, and magnetic behavior of a new family of binuclear Co-Ln complexes of formula [LnCoL(NO)]·HO (Ln = La, ; Gd, ; Tb, ; Dy, ; Ho, ; HL = 3-methoxy--(2-(methylsulfanyl)phenyl)salicylaldimine) have been reported. The chosen ligand system HL has adjacent soft ONS and hard OO binding pockets ideal for selective coordination of Co and 4f metal ions. All the complexes - exhibit a Co center in a highly distorted octahedral geometry with the Ln centers in bicapped square-antiprism geometry. The unique distortion about the Co center is introduced by the coordination of 4f metal ions in the hard OO coordination site. The distortion is further supported by the presence of -SMe groups giving an S donor atom which owing to its larger size can support large bond distances and angles. The geometry around the Co centers is intermediate between and geometric isomers. The magnetic properties of these complexes have been investigated by a "full model" approach using CONDON with the experimental magnetochemical analysis revealing ferromagnetic Co-Ln coupling in compounds -. Ab initio calculations on the X-ray crystal structures of - paint a semiquatitative picture about the contribution of the individual anisotropic centers toward the overall magnetic properties of the compounds. Theoretical analysis predicts and as weak single-ion magnet (SIM) and single-molecule magnet (SMM) respectively with Co being solely responsible for the complex anisotropy. In , plays a crucial role in preserving the anisotropy contribution of Co by channelizing relaxation via a higher excited exchange doublet. Because of the inefficiency of , , and in quenching single-ion Ln fragment transverse anisotropy and preserving Co high axial anisotropy (favoring rhombicity), - lack SMM behavior.

摘要

已报道了通式为[LnCoL(NO)]·H₂O(Ln = La、Gd、Tb、Dy、Ho;HL = 3 - 甲氧基 - 2 - (甲基硫烷基)苯基水杨醛亚胺)的新型双核Co - Ln配合物的合成、结构表征及磁行为。所选用的配体体系HL具有相邻的软ONS和硬OO结合口袋,非常适合Co和4f金属离子的选择性配位。所有配合物中,Co中心呈现高度扭曲的八面体几何构型,Ln中心为双帽方反棱柱几何构型。硬OO配位位点中4f金属离子的配位引入了Co中心独特的畸变。 -SMe基团的存在进一步支持了这种畸变,其提供了一个S供体原子,由于其较大的尺寸,可以支撑较大的键距和键角。Co中心周围的几何构型介于两种几何异构体之间。通过使用CONDON的“全模型”方法研究了这些配合物的磁性能,实验磁化学分析揭示了化合物 - 中存在铁磁Co - Ln耦合。对 - 的X射线晶体结构进行的从头算计算描绘了各个各向异性中心对化合物整体磁性能贡献的半定量图景。理论分析预测 和 分别为弱单离子磁体(SIM)和单分子磁体(SMM),其中Co单独负责复杂的各向异性。在 中, 通过经由更高激发的交换双重态引导弛豫,在保持Co的各向异性贡献方面起着关键作用。由于 、 和 在淬灭单离子Ln片段横向各向异性以及保持Co的高轴向各向异性(有利于菱形度)方面效率低下, - 缺乏SMM行为。

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