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首页> 外文期刊>Inorganica Chimica Acta >Structural and magnetic diversity in metal-dicyanamido polymer moieties: Paramagnetic and antiferromagnetic 1D chain compound and weakly ferromagnetic 2D motif
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Structural and magnetic diversity in metal-dicyanamido polymer moieties: Paramagnetic and antiferromagnetic 1D chain compound and weakly ferromagnetic 2D motif

机译:金属-双氰胺基聚合物部分的结构和磁性多样性:顺磁性和反铁磁性一维链化合物和弱铁磁性2D基序

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摘要

The reaction of M(NO3)(2)center dot xH(2)O (M = Cu, Ni and Co; x = 3 for Cu and x = 6 for Co/Ni), imidazole (Im) and sodium dicyanamide (dca) afforded the complexes [M(Im)(2)(dca)(2)] (where M = Cu for 1, M = Ni for 2, and M = Co for 3). All of them have been characterized structurally by single crystal X-ray diffraction measurements. X-ray analysis reveals that the dicyanamido ligand features the mu(1,3) bridging mode that led to the formation of two-dimensional structure of complex 1 while complexes 2 and 3 attribute an infinite one-dimensional chain like structure to generate the fascinating molecular assemblies. The {N(CN)(2)} ligands present in the complexes 2 and 3 are coordinated in end-to-end (mu(1,5)) fashion. All the complexes have distorted octahedral geometry around the central metal ion and coordinated by two amine nitrogen atoms from imidazole ligands and four nitrogen atoms from dca ligands. The variable temperature (2-300 K) magnetic susceptibility measurements showed that the magnetic interaction between the metal centers in the complex 1 is dominantly ferromagnetic while the metal ions in complex 3 are antiferromagnetically coupled. On the contrary, complex 2 is a simple paramagnet. The results of magnetic model are in good agreement with the experimental data.
机译:M(NO3)(2)中心点xH(2)O(M = Cu,Ni和Co; Cu = x 3,Co / Ni x = 6),咪唑(Im)和双氰胺钠(dca )得到配合物[M(Im)(2)(dca)(2)](其中,M = Cu,1,M = Ni,2,M = Co,3)。所有这些都已通过单晶X射线衍射测量进行了结构表征。 X射线分析表明,双氰胺基配体具有mu(1,3)桥接模式,导致形成复合物1的二维结构,而复合物2和3赋予无限的一维链状结构以产生迷人的效果分子组装。络合物2和3中存在的{N(CN)(2)}配体以端对端(mu(1,5))的方式配位。所有的配合物都在中心金属离子周围扭曲了八面体的几何形状,并由咪唑配体的两个胺氮原子和dca配体的四个氮原子配位。可变温度(2-300 K)的磁化率测量结果表明,配合物1中金属中心之间的磁性相互作用主要是铁磁性,而配合物3中的金属离子则是反铁磁性耦合的。相反,复数2是简单的顺磁铁。磁模型的结果与实验数据吻合良好。

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