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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A new class of Dy-III-SIMs associated with a guanidine-based ligand
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A new class of Dy-III-SIMs associated with a guanidine-based ligand

机译:一种与基于胍的配体相关的新类DY-III-SIM卡

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A family of four mononuclear Dy-III complexes of the guanidine-based ligand L [L = tris(2-hydroxybenzylidene)triaminoguanidine] with formulas [DyLCl2(DMF)(2)]center dot DMF center dot CH3OH (1), [DyL2(CH3OH)(2)]Br center dot H2O center dot 3CH(3)OH (2), [DyL2(H2O)(2)]SCN center dot 3H(2)O center dot CH3OH (3) and [DyL2(CH3OH)(2)]SCN center dot CH3CN center dot CH3OH (4) were successfully prepared by varying reaction conditions. Complex 1 is seven-coordinate, with three N2O from ligand L along with two equatorially trapped DMF molecules and two axial Cl- anions, adopting pentagonal bipyramidal D-5h symmetry. Complexes 2-4 have somewhat similar structures with six donor N4O2 sites from two ligands and two O from corresponding solvent molecules, featuring a N4O4 octa-coordinate environment with triangular dodecahedron D-2d symmetry. Magnetic investigations indicated that complex 1 did not demonstrate single-molecule magnetic behavior, while complexes 2-4 were single-ion magnets (SIMs) under zero applied DC field with the effective energy barriers (U-eff) of 207.3 (2), 222.5 (3) and 311.7 K (4), respectively. The different types of coordinated solvent molecules and counter anions caused changes in intermolecular interactions and coordination geometries that severely affected their magnetic dynamics. The magnetic behaviors of these complexes were investigated through complete-active space self-consistent field (CASSCF) calculations with the inclusion of spin-orbit effects. Calculations revealed that the measured differences in magnetic behaviors originated mainly from intermolecular and crystal-packing effects as isolated complexes 1-4 have almost identical electronic and magnetic properties.
机译:一个由四个单核Dy III配合物组成的家族,由胍基配体L[L=三(2-羟基苄叉)三氨基胍]与式[DyLCl2(DMF)(2)]中心点DMF中心点CH3OH(1),[DyL2(CH3OH)(2)]Br中心点H2O中心点3CH(3)OH(2)组成,通过改变反应条件,成功地制备了[DyL2(H2O)(2)]SCN中心点3H(2)O中心点CH3OH(3)和[DyL2(CH3OH)(2)]SCN中心点CH3CN中心点CH3OH(4)。配合物1为七配位,三个来自配体L的N2O,以及两个平衡捕获的DMF分子和两个轴向Cl-阴离子,采用五边形双锥D-5h对称性。配合物2-4的结构有些相似,有两个配体的六个施主N4O2位点和相应溶剂分子的两个O位点,具有三角十二面体D-2d对称的N4O4八配位环境。磁性研究表明,配合物1没有表现出单分子磁性,而配合物2-4是零外加直流电场下的单离子磁体,有效势垒(U-eff)分别为207.3(2)、222.5(3)和311.7K(4)。不同类型的配位溶剂分子和反阴离子引起了分子间相互作用和配位几何结构的变化,严重影响了它们的磁动力学。通过考虑自旋轨道效应的完全主动空间自洽场(CASSCF)计算,研究了这些配合物的磁性行为。计算表明,测量到的磁性差异主要源于分子间和晶体堆积效应,因为孤立的配合物1-4具有几乎相同的电子和磁性。

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