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Synthesis, vibrational spectra and X-ray structures of copper(I) thiourea complexes

机译:硫脲铜(I)配合物的合成,振动光谱和X射线结构

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Complex formation of thiourea with copper takes place as an intermediate step in the preparation of copper sulfide thin films by spray pyrolysis starting from aqueous solutions of copper(II) chloride and thiourea. The stoichiometry of the complex and that of the resulting thin film primarily depends on the molecular ratio of the starting materials. For comparison, the structures of all copper(I) thiourea complexes found in the Cambridge Structural Database are classified in this paper. In addition, syntheses, structural (single crystal XRD also at low temperature 193 K) and spectroscopic studies (FTIR and Raman) of six copper-thiourea complexes are now reported. The copper to thiourea stoichiometric ratio is 1:3 in four of these complexes, but their structures are basically different as dimerization or polymer formation takes place depending on whether the water of crystallisation is present or absent. The structure of bis(mu-thiourea)tetrakis(thiourea)dicopper(I) dichloride dihydrate, [Cu-2(tu)(6)]Cl-2 . 2H(2)O (1) was determined at room and also at low temperature. Bis(mu-thiourea)tetrakis(thiourea)dicopper(I) dibromide dihydrate, [Cu-2(tu)(6)]Br-2 . 2H(2)O (2) is isomorphous with 1, like the anhydrous compounds chlorotris(thiourea)copper(I), [Cu(tu)(3)]Cl (3) and bromotris(thiourea)copper(I), [Cu(tu)(3)]Br (4) are isomorphous. In the third isomorphous pair of complexes the copper to thiourea stoichiometric ratio is 1:1, viz. chloro(thiourea)copper(I) hemihydrate, [Cu(tu)]Cl . 0.5H(2)O (5) and bromo(thiourea)copper(I) hemihydrate, [Cu(tu)]Br . 0.5H(2)O (6). During the preparation of chloro(thiourea)copper(I) hemihydrate (5) a reaction by product alpha,alpha'-dithiobisformamidinium dichloride, [SC(NH2)(2)](2)Cl-2 (7) was identified and structurally characterized which made it possible to suggest a reaction path leading to complex formation. (C) 2003 Elsevier B.V. All rights reserved. [References: 56]
机译:硫脲与铜的络合物形成是通过从氯化铜(II)和硫脲的水溶液开始的喷雾热解制备硫化铜薄膜的中间步骤。配合物的化学计量和所得薄膜的化学计量主要取决于原料的分子比。为了进行比较,本文对剑桥结构数据库中发现的所有铜(I)硫脲铜配合物的结构进行了分类。此外,目前已报道了六种铜-硫脲配合物的合成,结构(在低温193 K下也为单晶XRD)和光谱研究(FTIR和拉曼光谱)。在这些络合物中的四种中,铜与硫脲的化学计量比为1:3,但是它们的结构基本上不同,因为是否存在结晶水取决于是否发生二聚或形成聚合物。二(二硫代脲)四(硫脲)二氯(I)二水合物[Cu-2(tu)(6)] Cl-2的结构。在室温和低温下均测定了2H(2)O(1)。二(二硫代脲)四(硫脲)二铜(I)二溴化物二水合物,[Cu-2(tu)(6)] Br-2。 2H(2)O(2)与1同晶,如无水化合物三氯(硫脲)铜(I),[Cu(tu)(3)] Cl(3)和溴虫(硫脲)铜(I),[ Cu(tu)(3)] Br(4)是同构的。在第三对同构配合物中,铜与硫脲的化学计量比为1:1,即。氯(硫脲)铜(I)半水合物[Cu(tu)] Cl。 0.5H(2)O(5)和溴(硫脲)铜(I)半水合物[Cu(tu)] Br。 0.5H(2)O(6)。在制备氯(硫脲)铜(I)半水合物(5)的过程中,确定了副产物α,α'-二硫代双甲ami二氯化物[[SC(NH2)(2)](2)Cl-2(7)其特征在于可以提出导致络合物形成的反应路径。 (C)2003 Elsevier B.V.保留所有权利。 [参考:56]

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