磺胺与铂配位的结构和电子分析:密度泛函理论研究

IF 1.1 3区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR
Á. B. Cruz, A. K. dos Santos Pereira, D. H. Pereira
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引用次数: 0

摘要

金属药物是含有金属的化合物,设计用于治疗目的。它们可以用作抗癌、抗菌或抗炎剂,磺胺类药物及其配合物也是如此。磺胺类药物及其配合物由一组含有磺胺官能团(SO2NH)的有机分子组成,是最早具有抗菌活性的合成药物。在这种情况下,密度泛函理论被用来研究可能的描述与铂的配位和结构性质和立体电子效应。进行了前沿分子轨道分析、分子静电势分析、反应性指数分析以及结构和拓扑性能评价。通过对分子静电势和前沿轨道的分析,认为铂的最佳配位区是功能胺基中的氮。由于结构参数的研究,无法对磺胺类化合物与铂络合前后的行为进行评价,其中DMSO配体中N-H和N-C键增加,S=O和S - c键减少,会导致磺胺类化合物配体结构扭曲。基于拓扑性质,发现非络合的磺胺类(配体)具有比配合物更强的键(N-H和N-C)。与分离的DMSO相比,S=O和S - c键在配合物中更强,Pt-S、Pt-N、Pt-Cl和Pt-I键的结果显示其部分共价特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural and Electronic Analysis of Sulfonamide Coordination with Platinum: A Density Functional Theory Study

Structural and Electronic Analysis of Sulfonamide Coordination with Platinum: A Density Functional Theory Study

Metallopharmaceuticals are compounds that contain metals and are designed for therapeutic purposes. They can be used as anticancer, antimicrobial or anti-inflammatory agents, as can sulfonamides and their complexes, which consist of a set of organic molecules containing the sulfonamide functional group (SO2NH) and were pioneered as synthetic drugs with antibacterial activity. In this context, density functional theory was used to investigate possible descriptors for coordination and structural properties and stereoelectronic effects the of sulfonamides with Platinum. Some analyzes were carried out, including the analysis of the frontier molecular orbitals, the molecular electrostatic potential, the reactivity indices, and the evaluation of the structural and topological properties. Through analysis of the molecular electrostatic potential and frontier orbitals, it was agreed that the best region for platinum coordination is the nitrogen present in the functional amine group. The study of structural parameters prevented evaluating the behavior of sulfonamides before and after complexation with platinum, in which there was an increase in N–H and N–C bonds and a reduction in S=O and S–C bonds in the DMSO ligand, which could generate distortions in the structure of sulfonamide ligands. Based on topological properties, it was found that non-complexed sulfonamides (ligands) have stronger bonds (N–H and N–C) than in complexes. S=O and S–C bonds were stronger in complexes compared to DMSO isolated and the results obtained for the Pt–S, Pt–N, Pt–Cl and Pt–I bonds showed their partially covalent characters.

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来源期刊
Russian Journal of Coordination Chemistry
Russian Journal of Coordination Chemistry 化学-无机化学与核化学
CiteScore
2.40
自引率
15.80%
发文量
85
审稿时长
7.2 months
期刊介绍: Russian Journal of Coordination Chemistry is a journal that publishes reviews, original papers, and short communications on all aspects of theoretical and experimental coordination chemistry. Modern coordination chemistry is an interdisciplinary science that makes a bridge between inorganic, organic, physical, analytical, and biological chemistry.
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