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Structural Analysis of Polymeric Copper(II)-Pyrazinamide Complexes Prepared from Two Different Copper(II) Salts

机译:两种不同铜(II)盐制备的聚合物铜(II)吡嗪酰胺配合物的结构分析

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In crystal engineering, the presence of different types of anion may alter the structure of transition metal complexes. Thus, the anions may also govern the properties of the metal complexes. Hereby we reported a structural analysis of polymeric copper(II)-pyrazinamide (pza) complexes prepared from copper(II) sulphate and copper(II) chloride. The complexes were crystallised using a bench-top technique with copper(II):pza molar ratio of 1:2 in a layered H2O-CH3OH solvent at room temperature. Single crystal XRD, ATR-IR and melting point apparatus were used to analyse the structure and characterise the complexes. Single crystal XRD analyses reveals that both complexes, [Cu(μ-pza)(SO4)(H2O)2]_n (A) and [Cu(pza)2(μ-Cl)2]_n (B) forms a 1D polymeric structure with different metal-ligand connectivity around the octahedral copper centre. The copper centres are also linked by different ligand, namely pyrazinamide in A and chloride in B. Thus, the Cu-Cu distances in both complexes are different, 6.719 A in A and 3.658 A in B. Unlike in A, the crystal structure of B has two unique copper centres. In addition, crystal structures of A and B were also compared to closely related copper(II)-pza complexes from published literature. As also observed in many metal complexes, crystal structures of copper(II)-pza complex were affected by the anion of the metal salts used in the reaction, in which the anion also involves in the crystal structures.
机译:在晶体工程中,不同类型阴离子的存在可以改变过渡金属配合物的结构。因此,阴离子还可以控制金属配合物的性质。因此,我们报道了由铜(II)硫酸铜(II)氯化铜制备的聚合物铜(II) - 吡嗪酰胺(PZA)配合物的结构分析。在室温下,使用铜(II)的台式技术:PZA摩尔比,在室温下在层状的H 2 O-CH 3 OH溶剂中的摩尔比为1:2,将复合物结晶。单晶XRD,ATR-IR和熔点装置用于分析结构并表征复合物。单晶XRD分析显示,两个配合物,[Cu(μ-PZA)(SO 4)(SO 4)(H2O)2] _N(A)和[Cu(A)和[Cu(PZA)2(μ-Cl)2] _N(B)形成1D聚合物八层二铜中心周围具有不同金属配体连接的结构。铜中心也通过不同的配体,即吡嗪酰胺在B中的吡嗪酰胺连接。因此,两个配合物中的Cu-Cu距离是不同的,在A和3.658A中的2619A中,晶体结构不同B有两个独特的铜中心。此外,还将A和B的晶体结构与来自公开文献的密切相关的铜(II)-PZA复合物进行了比较。如在许多金属配合物中观察到的,铜(II)-PZA复合物的晶体结构受到反应中使用的金属盐的阴离子的影响,其中阴离子也涉及晶体结构。

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