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首页> 外文期刊>Inorganica Chimica Acta >Structure and magnetic properties of a linear oximato-bridged tetranuclear copper(II) complex
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Structure and magnetic properties of a linear oximato-bridged tetranuclear copper(II) complex

机译:线性肟基桥联四核铜(II)配合物的结构和磁性

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The tetranuclear copper(II) complex of formula [Cu-2(dmg)(Hdmg)(terpy)](2)(ClO4)(2) (1) (H(2)dmg=dimethylglyoxime and terpy=2,2':6',2 "-terpyridine) has been synthesized and its crystal structure determined by X-ray diffraction methods. It crystallizes in the triclinic system, space group P(-1), with a=14.382(3), b=13.728(3), c=8.979(2) Angstrom, alpha=96.99(2), beta=111.85(2), gamma=11122(3)degrees, V=1465.0(9) Angstrom(3), Z=1, D-c=1.607 g cm(-3), M-r=1418.0, F(000)=719, lambda(Mo K alpha)=0.71073 Angstrom, mu(Mo K alpha)=16.61 cm(-1) and T=298 K. A total of 4891 reflections were measured over the range 2 less than or equal to theta less than or equal to 25 degrees and 4393 of them were unique (l>2.5 sigma(l)) and used in the structural analysis. The structure of 1 may be described as two dimeric [Cu-2(dmg)(Hdmg)(terpy)](+) units linked by relatively long out-of-plane oxime bonds building a cationic centrosymmetric tetrameric entity with a linear Cu-4(NO)(8) core, and uncoordinated perchlorate anions. Within each dinuclear unit, the partially deprotonated [Cu(dmg)(Hdmg)](-) complex unit coordinates to the [Cu(terpy)](2+) fragment through in-plane oxime bonds in an asymmetric fashion. The coordination geometry around both copper atoms is square pyramidal. The intra-and interdimer copper separations within the tetranuclear complex are 3.674(5) and 3.994(6) Angstrom, respectively. Variable-temperature magnetic susceptibility measurements (4.2-300 K) have been interpreted on the basis of the tetranuclear nature of the compound. The nature and magnitude of the magnetic couplings are discussed on the basis of the structural features and compared with that of related oximato-bridged copper(II) dinuclear complexes. (C) 1998 Elsevier Science S.A. [References: 55]
机译:式[Cu-2(dmg)(Hdmg)(terpy)](2)(ClO4)(2)(1)的四核铜(II)配合物(H(2)dmg =二甲基乙二肟,terpy = 2,2'合成了:6',2“-叔吡啶),并通过X射线衍射法确定了其晶体结构。在三斜晶系空间群P(-1)中结晶,a = 14.382(3),b = 13.728 (3),c = 8.979(2)埃,alpha = 96.99(2),beta = 111.85(2),伽马= 11122(3)度,V = 1465.0(9)埃(3),Z = 1,Dc = 1.607 g cm(-3),Mr = 1418.0,F(000)= 719,λ(Mo K alpha)= 0.71073埃,mu(Mo K alpha)= 16.61 cm(-1)和T = 298 K.在小于或等于theta小于或等于25度的2范围内共测量了4891个反射,其中4393个反射是唯一的(l> 2.5 sigma(l)),并用于结构分析。5月1日的结构被描述为通过相对较长的面外肟键连接的两个二聚体[Cu-2(dmg)(Hdmg)(terpy)](+)单元,与线性Cu-4(NO)构成阳离子中心对称四聚体实体( 8)核心,与p不协调氯酸盐阴离子。在每个双核单元中,部分去质子化的[Cu(dmg)(Hdmg)](-)复杂单元通过平面内肟键以不对称方式与[Cu(terpy)](2+)片段配位。两个铜原子周围的配位几何形状为方形锥体。四核复合物中的二聚体内和二聚体间铜间隔分别为3.674(5)和3.994(6)埃。根据化合物的四核性质解释了可变温度磁化率测量值(4.2-300 K)。根据结构特征讨论了磁耦合的性质和大小,并与相关的肟基桥联铜(II)双核配合物进行了比较。 (C)1998 Elsevier Science S.A. [参考:55]

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