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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >XPS, single crystal X-ray diffraction and cyclic voltammetric studies on 1,10-phenanthroline and 2,2 '-bipyridine adducts of bis(piperidinecarbodithioato-S,S ')cadmium(II) with CdS4N2 environment - A stereochemical and electronic distribution investigation
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XPS, single crystal X-ray diffraction and cyclic voltammetric studies on 1,10-phenanthroline and 2,2 '-bipyridine adducts of bis(piperidinecarbodithioato-S,S ')cadmium(II) with CdS4N2 environment - A stereochemical and electronic distribution investigation

机译:XPS,单晶X射线衍射和循环伏安法研究CdS4N2环境下双(哌啶碳二硫代-S,S')镉(II)的1,10-菲咯啉和2,2'-联吡啶加合物

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(1,10-Phenanthroline)bis(piperidinecarbodithioato-S,S')cadmium(II), [Cd(pipdtc)(2)(1,10-phen)] (1) and (2,2'-bipyridine)bis(piperidinecarbodithioato-S,S')cadmium(II), [Cd(pipdtc)(2)(bipy)] (2) adducts were prepared and the crystal structures are reported. Cd-S and Cd-N distances and the angles subtended at cadmium are almost the same in both complexes but the Cd-S distances in the adducts are longer than those in Cd(pipdtc)2 (3) complexes due to the presence of an additional neutral ligand. Thioureide C-N distance in 1 and 2 are supported by vC-N bands observed at 1471 and 1470 cm(-1), respectively. S2p binding energies for the adducts show a significant reduction in value compared to the parent dithiocarbamate indicating the weakening of the Cd-S bond on adduct formation. The observed reduction in binding energy is due to the increased electron density on the metal in the adducts. The cyclic voltammetric study on the complexes also show an increase of electron density on cadmium in the adducts compared to Cd(pipdtc)(2). (c) 2008 Elsevier Ltd. All rights reserved.
机译:(1,10-菲咯啉)双(哌啶碳二硫代-S,S')镉(II),[Cd(pipdtc)(2)(1,10-phen)](1)和(2,2'-联吡啶)双(哌啶碳二硫代-S,S')镉(II),[Cd(pipdtc)(2)(bipy)](2)加合物的制备和晶体结构的报道。两种配合物中的Cd-S和Cd-N距离以及在镉中的夹角几乎相同,但是加合物中Cd-S的距离长于Cd(pipdtc)2(3)配合物中的距离。其他中性配体。 1和2中的硫脲C-N距离分别由在1471和1470 cm(-1)处观察到的vC-N谱带支持。与母体二硫代氨基甲酸酯相比,加合物的S2p结合能显示出明显的降低值,表明加合物形成时Cd-S键减弱。观察到的结合能降低是由于加合物中金属上电子密度的增加。与Cd(pipdtc)(2)相比,对络合物的循环伏安研究还显示了加合物中镉上电子密度的增加。 (c)2008 Elsevier Ltd.保留所有权利。

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