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Magnetic coupling in end-to-end azido-bridged copper and nickel binuclear complexes: A theoretical study

机译:端到端叠氮桥联铜和镍双核络合物中的磁耦合:理论研究

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摘要

The influence of structural parameters on the exchange coupling J between metal atoms in end-to-end azido-bridged binuclear complexes of Cu(II) and NL(II) has been studied by means of density functional calculations. For the case of double-bridged Cu(II) compounds, four ideal pentacoordinate models have been employed in which the coordination spheres of the two metal atoms are either a trigonal bipyramid or a square pyramid, connected through equatorial or axial bridges. The distortion from those ideal geometries along a Ferry pathway has also been analyzed. For the hexacoordinate Ni(II) compounds, models with two or one bridging ligands have been studied. The effect of the bridging M-N-N bond angles on the exchange coupling has been analyzed for both the Cu(II) and Ni(II) complexes. [References: 51]
机译:通过密度泛函计算研究了结构参数对Cu(II)和NL(II)端对端叠氮桥联双核络合物中金属原子之间交换耦合J的影响。对于双桥联的Cu(II)化合物,已经使用了四个理想的五坐标模型,其中两个金属原子的配位球是通过赤道或轴向桥连接的三角双锥或四角锥。还分析了沿渡轮路径从那些理想几何形状产生的变形。对于六配位的Ni(II)化合物,已经研究了具有两个或一个桥接配体的模型。对于Cu(II)和Ni(II)配合物,均已分析了桥接M-N-N键角对交换耦合的影响。 [参考:51]

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