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聚合物配合物。第三部分。新型磺胺类药物配合物的超分子配位模式和结构。

Polymer complexes. LIII. Supramolecular coordination modes and structural of novel sulphadrug complexes.

机构信息

Chemistry Department, Faculty of Science (Demiatta), Mansoura University, New Demiatta, Egypt.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2010 Nov;77(4):795-801. doi: 10.1016/j.saa.2010.08.006. Epub 2010 Aug 10.

Abstract

Novel polymer complexes of copper(II), palladium(II), platinum(II) and cadmium(II) containing homopolymer [4-acrylamido benzene sulphonyl guanidine; (HL)] and various anions (SO₄²⁻, CH₃COO⁻, NO₃⁻, Br⁻ or Cl⁻) have been designed and carried out. Their structures were investigated by elemental analyses, spectral (IR, UV-vis, ¹H NMR and ESR) and magnetic moments. The modes of interactions between the ligand and the metals were discussed, where oxygen (of O=S=O group) and nitrogen atom [of imino nitrogen (NH/N) of the guanidine group] are involved in chelation. The homopolymer shows two types of coordination behaviour. In mononuclear polymer complexes 4 and 6-10, it acts as a neutral bidentate ligand chelated through the NH and O atoms, whereas in the polymer complexes 1-3, 5 and 11, monobasic bidentate ligand is coordinated through the -N and -O atoms. The poly-chelates are of 1:1/1:2 (metal-homopolymer) stoichiometry and exhibit four coordination. On the basis of electronic spectral data and magnetic susceptibility measurement square planar geometry has been proposed. The ESR spectral data provided information about their structure on the basis Hamiltonian parameters and degree of covalency. From the electron paramagnetic resonance and spectral data, the orbital reduction factors were calculated.

摘要

新型聚合物配合物的铜(II),钯(II),铂(II)和镉(II)含有均聚物[4-丙烯酰胺基苯磺酰胍;(HL)]和各种阴离子(SO₄²⁻,CH₃COO⁻,NO₃⁻,Br⁻或Cl⁻)已被设计和进行。它们的结构通过元素分析,光谱(IR,UV-vis,¹H NMR 和 ESR)和磁矩进行了研究。讨论了配体与金属之间的相互作用方式,其中氧(O=S=O 基团)和氮原子[脒基氮(NH/N)的胍基]参与螯合。均聚物显示出两种类型的配位行为。在单核聚合物配合物 4 和 6-10 中,它作为中性双齿配体通过 NH 和 O 原子螯合,而在聚合物配合物 1-3、5 和 11 中,一元双齿配体通过-N 和-O 原子配位。多螯合物的化学计量比为 1:1/1:2(金属-均聚物),并呈现出四配位。根据电子光谱数据和磁化率测量,提出了平面正方形几何形状。ESR 光谱数据提供了基于哈密顿参数和共价度的结构信息。根据电子顺磁共振和光谱数据,计算了轨道还原因子。

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