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首页> 外文期刊>Journal of Molecular Structure >Synthesis, NMR spectral and structural studies on mixed ligand complexes of Pd(II) dithiocarbamates: First structural report on palladium(II) dithiocarbamate with SCN(-)ligand
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Synthesis, NMR spectral and structural studies on mixed ligand complexes of Pd(II) dithiocarbamates: First structural report on palladium(II) dithiocarbamate with SCN(-)ligand

机译:钯(II)二硫代氨基甲酸酯混合配体配合物的合成,NMR光谱和结构研究:关于二硫代氨基甲酸钯(II)与SCN(-)配体的首次结构报告

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摘要

Three new mixed ligand complexes of palladium(II) dithiocarbamates; [Pd(4-dpmpzdtc)(PPh3)(SCN)] (1), [Pd(4-dpmpzdtc)(PPh3)Cl] (2) and [Pd(bzbudtc)(PPh3)Cl] (3), (where, 4-dpmpzdtc = 4-(diphenylmethyl) piperazinecarbodithioato anion, bzbudtc = N-benzyl-N-butyldithiocarbamato anion and PPh3 = triphenylphosphine) have been synthesized from their respective parent dithiocarbamates by ligand exchange reactions and characterized by IR and NMR (H-1, C-13 and P-31) spectroscopy. IR and NMR spectral data support the isobidentate coordination of the dithiocarbamate ligands in all complexes (1-3) in solid and in solution, respectively. Single crystal diffraction analysis of complexes 1-3 evidences that all three complexes are exhibiting distorted square planar geometry. The Pd-S distances in 1-3 vary in accordance with the differences in trans influences of PPh3, SCN- and Cl- and it is in the order of PPh3 > SCN- > and Cl-. Interchange of the anionic auxiliary ligand (SCN- to Cl-) induces asymmetry to the dithiocarbamate-metal bonds. Thioureide C-N bond distances are short in 1-3, supporting a contribution of thioureide form to the structures. The observed distortions in the square planar geometry for 1-3, are in the order of 1 > 2 > 3. (C) 2015 Elsevier B.V. All rights reserved.
机译:钯(II)二硫代氨基甲酸酯的三种新型混合配体配合物; [Pd(4-dpmpzdtc)(PPh3)(SCN)](1),[Pd(4-dpmpzdtc)(PPh3)Cl](2)和[Pd(bzbudtc)(PPh3)Cl]](3),(其中,4-dpmpzdtc = 4-(二苯甲基)哌嗪碳二硫代氨基阴离子,bzbudtc = N-苄基-N-丁基二硫代氨基甲酸根阴离子和PPh3 =三苯基膦)已通过配体交换反应从它们各自的母体二硫代氨基甲酸酯合成,并通过IR和NMR(H-1 ,C-13和P-31)光谱。 IR和NMR光谱数据分别支持固体和溶液中所有配合物(1-3)中二硫代氨基甲酸酯配体的同构配位。配合物1-3的单晶衍射分析表明,所有三种配合物均表现出扭曲的正方形平面几何形状。 1-3中的Pd-S距离根据PPh3,SCN-和Cl-的反式影响的不同而变化,并且顺序为PPh3> SCN->和Cl-。阴离子辅助配体(SCN-与Cl-)的互换引起二硫代氨基甲酸酯-金属键的不对称。硫脲化物的C-N键距离较短,为1-3,支持了硫脲化物形式对结构的贡献。对于1-3的方形平面几何形状观察到的变形顺序为1> 2>3。(C)2015 Elsevier B.V.保留所有权利。

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