首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, conformational analysis and antibacterial activity of Au(I)-Ag(II) and Au(II)-Hg(H) heterobimetallic N-heterocyclic carbene complexes
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Synthesis, conformational analysis and antibacterial activity of Au(I)-Ag(II) and Au(II)-Hg(H) heterobimetallic N-heterocyclic carbene complexes

机译:Au(i)-Ag(II)和Au(II)-Hg(H)偏异性金属N-杂环基络合物的合成,构象分析及抗菌活性

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摘要

A post-synthetic modification and metallation procedure has been used to prepare a family of heterobimetallic Au(I)-Ag(I) and Au(I)-Hg(II) complexes featuring either symmetrical or asymmetrical bis-N-heterocyclic carbene ligands with methylene or ethylene linker groups. This synthetic approach is versatile and allows for the synthesis of heterobimetallic complexes bearing asymmetrical ligands that differ in the nature of the NHC wingtip substituents (dimethyl, diethyl or ethyl-methyl) and for the selective placement of the different metal ions. The synthesised complexes were characterised using H-1 and C-13 NMR spectroscopy and high resolution mass spectrometry (HR-MS) and in the case of complexes 4a, 5b and 8b by X-ray crystallography. The complexes of the methylene linked bridging ligands display conformational isomerism in solution and the conformations adopted by selected compounds were examined using variable temperature (VT) H-1 NMR studies. The antibacterial properties of the heterobimetallic Au(I)-Ag(I) complexes in addition to the corresponding homobimetallic Ag(I)(2), Au(I)(2) complexes were evaluated against clinically relevant Gram-positive and Gram-negative bacterial strains. The homobimetallic Au(I)(2) complex and precursor pro-ligand displayed no antibacterial activity up to 256 mu g mL(-1), whereas the homobimetallic Ag(I)(2) was active against all Gram-positive and Gram-negative bacterial strains tested (MIC = 8-32 mu g mL(-1)). Interestingly, both Au(I)-Ag(I) heterobimetallic complexes displayed similar broad-spectrum activity (MIC = 4-32 mu g mL(-1)) to the Ag(I)(2) homobimetallic complex.
机译:合成后修饰和金属化程序已被用于制备异常的异常Au(I)和Au(I)和Au(i)-Hg(II)配合物的族聚合物,其具有对称或不对称的双-N-杂环丁烯配体亚甲基或乙烯连接基团。这种合成方法是通用的,允许合成轴承不对称配体的异络合物,其在NHC翼面取代基(二甲基,二乙基或乙基 - 甲基)的性质中不同,以及用于不同金属离子的选择性放置。使用H-1和C-13 NMR光谱和高分辨率质谱(HR-MS)以及通过X射线晶体学络合物4a,5b和8b的情况表征合成的复合物。使用可变温度(VT)H-1 NMR研究,检查亚甲基连接桥接配体的复合物在溶液中显示构象异构性,并检查所选化合物采用的构象。除了相应的同源物(I)(2),Au(I)(2)复合物外,还针对临床相关的革兰氏阳性和革兰氏阴性的抗菌性能细菌菌株。同源物Au(i)(2)复合物和前体Pro-Lig配体无抗菌活性高达256μg(-1),而同质化Ag(I)(2)对所有革兰氏阳性和克测试阴性细菌菌株(MIC =8-32μgmml(-1))。有趣的是,Au(i)-Ag(i)异质络合物均显示出类似的广谱活性(MIC =4-32μgml(-1))至Ag(I)(2)均质复合物。

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