首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Transition metal complexes of 2-amino-3,5-dihalopyridines: Syntheses, structures and magnetic properties of (3,5-diCAPH)(2)CuX4 and (3,5-diBAPH)(2)CuX4
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Transition metal complexes of 2-amino-3,5-dihalopyridines: Syntheses, structures and magnetic properties of (3,5-diCAPH)(2)CuX4 and (3,5-diBAPH)(2)CuX4

机译:2-氨基-3,5-二卤吡啶的过渡金属配合物:(3,5-diCAPH)(2)CuX4和(3,5-diBAPH)(2)CuX4的合成,结构和磁性

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摘要

A family of bis(2-amino-3,5-dihalopyridinium) tetrahalocuprate(II) compounds has been synthesized, including (3,5-diCAPH)(2)CuCl4 (1), (3,5-diCAPH)(2)CuBr4 (2), (3,5-diBAPH)(2)CuCl4 (3), and (3,5-diBAPH)(2)CuBr4 (4) [3,5-diCAPH = 2-amino-3,5-dichloropyridinium; 3,5-diBAPH = 2-amino-3,5-dibromopyridinium]. These complexes have been analyzed through single crystal X-ray diffraction and temperature dependent magnetic susceptibility. Compound 1 crystallizes in the P-1 space group and the tetrachlorocuprate ion is best described as possessing a distorted square planar geometry. Compounds 2-4 are structurally similar and crystallized in the P2(1), P2(1)/c, and P2(1) space groups respectively. The tetrahalocuprate ions are best described as distorted tetrahedra. All four compounds show antiferromagnetic interactions and were fit to the uniform chain Heisenberg model with resulting 2J/k(B) values of -11.71(2) K, -2.21(1) K, -12.43 (2) K, and -1.36(1) K, respectively. The exchange values correlate well with the two-halide exchange pathway parameters. The unusual observation that the chloride complexes show stronger magnetic exchange than the bromide complexes provides strong support that the exchange can be strongly dependent upon the Cu-X center dot center dot center dot X angles and Cu-X center dot center dot center dot X-Cu torsion angles.
机译:已合成了双(2-氨基-3,5-二卤代吡啶鎓)四卤代戊二酸酯(II)化合物,包括(3,5-diCAPH)(2)CuCl4(1),(3,5-diCAPH)(2) CuBr4(2),(3,5-diBAPH)(2)CuCl4(3)和(3,5-diBAPH)(2)CuBr4(4)[3,5-diCAPH = 2-amino-3,5-二氯吡啶鎓3,5-diBAPH = 2-氨基-3,5-二溴吡啶鎓]。这些配合物已通过单晶X射线衍射和温度相关的磁化率进行了分析。化合物1在P-1空间基团中结晶,最好将四氯铜离子描述为具有扭曲的方形平面几何形状。化合物2-4在结构上相似,分别在P2(1)/ n,P2(1)/ c和P2(1)/ n空间组中结晶。最好将四卤酸盐离子描述为扭曲的四面体。所有这四种化合物均显示出反铁磁相互作用,并且适合于均链Heisenberg模型,其2J / k(B)值为-11.71(2)K,-2.21(1)K,-12.43(2)K和-1.36( 1)分别为K。交换值与二卤化物交换路径参数很好地相关。氯化物络合物显示出比溴化物络合物更强的磁性交换这一非同寻常的观察结果提供了强有力的支持,即交换可以强烈依赖于Cu-X中心点中心点中心点X角和Cu-X中心点中心点中心点X-铜扭转角。

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