首页> 外文OA文献 >The importance of Au⋯π(aryl) interactions in the formation of spherical aggregates in binuclear phosphane gold(i) complexes of a bipodal thiocarbamate dianion: a combined crystallographic and computational study, and anti-microbial activity
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The importance of Au⋯π(aryl) interactions in the formation of spherical aggregates in binuclear phosphane gold(i) complexes of a bipodal thiocarbamate dianion: a combined crystallographic and computational study, and anti-microbial activity

机译:双核磷酸酯Dianion的双核磷酸金(I)复合物中球形聚集体形成的Auπ(芳基)相互作用的重要性:结晶和计算研究,抗微生物活性

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摘要

Binuclear phosphanegold(i) complexes of a bipodal thiocarbamate dianion, (RPAu)L, R = Et (1), Ph (2) and Cy (3), where LH is {1,4-[MeOC(S)N(H)]CH}, have been synthesised, and characterised spectroscopically (NMR and IR) and by X-ray crystallography. The gold atoms are linearly coordinated within a P-,S-donor set, and are oriented toward the central ring to form intramolecular Au u22efu3c0(aryl) interactions, rather than the intramolecular Au u22efO interactions normally observed in mononuclear analogues. This phenomenon has been investigated by theory (LC-u3c9PBE-XDM) for 1 which revealed that the geometry optimised species with two Au u22efu3c0(aryl) interactions is more stable by at least 12 kcal mol-1 compared to conformations having one or more Au u22efO interactions instead. The disk diffusion, minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) methods were used to observe the inhibitory effect of complexes 1-3. The disk diffusion results demonstrated that 1 exhibited a broad spectrum of anti-bacterial activity toward 24 strains of Gram-positive and Gram-negative bacteria. By contrast, the anti-bacterial activity of 2 and 3 was limited to Gram-positive bacteria. Further evaluation showed that 1 exhibited marked bactericidal activity against B. cereus, B. subtilis, E. faecalis, L. monocytogenes, S. aureus, S. saprophyticus and methicillin resistant S. aureus cf. standard antibiotics tetracycline and chloramphenicol.
机译:双核磷酸盐脱氨基(I)复合物,(RPAU)L,R =等(1),pH(2)和CY(3),其中LH为{1,4- [Meoc(s)n(h )] CH}已被合成,并进行光谱(NMR和IR)和通过X射线晶体学。金原子在P-S-供体组内线性配位,并向中央环定向以形成分子内Au U22EF U3C0(芳基)相互作用,而不是在单核类似物中通常观察到的分子内Au U22EFO相互作用。通过理论(LC- U3C9PBE-XDM)研究了这种现象,其中1表示具有两个Au U22EF U3C0(芳基)相互作用的几何优化物质比具有符合构象相比,至少12kcal mol-1更稳定。一个或多个au u22efo互动。使用磁盘扩散,最小抑制浓度(MIC)和最小杀菌浓度(MBC)方法来观察复合物1-3的抑制作用。磁盘扩散结果表明,1表现出朝向24株革兰氏阳性和革兰氏阴性细菌的广谱抗细菌活性。相比之下,2和3的抗细菌活性仅限于革兰氏阳性细菌。进一步的评价表明,1对B.培养物,B.枯草芽孢杆菌,大肠杆菌,L.单核细胞增糖,S. aaprophyticus和Methicillin抗性S. aureus Cf的标记杀菌活性表现出明显的杀菌活性。标准抗生素四环素和氯霉素。

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