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The Coordination Chemistry in the Antifungal Effect of Tin(IV)-Bis(Pyrimidin-2-Ylthio)Alkane Derivatives

机译:锡(IV)-双(嘧啶-2-乙硫基)烷烃衍生物抗真菌作用的配位化学

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High productivity of agriculture goods is closely associated with the use of fungicides to reduce losses caused by the fungal plant diseases. However, appearance of resistant population of pathogens to several commercial fungicides is a common phenomenon that requires control. There is, therefore, need for developing novel fungicide compounds that are environmentally safe with low toxicity to wild life and humans. In this study novel organotin(IV) derivatives of bis(pyrimidin-2-ylthio)methane (ptm), bis(pyrimidin-2-ylthio)ethane (pte) and bis(pyrimidin-2-ylthio)hexane (pth) were tested against phytopathogens to evaluate their activity as potential fungicides. The bis(pyrimidin-2-ylthio)alkanes were not active in contrast with the organotin(IV) derivatives. The 5-coordinate triphenyltin(IV) derivatives were the most active compounds in a wide range of concentration. This study shows that the microorganisms were susceptible to the acid character of the organotin(IV) precursors.
机译:农产品的高生产率与杀真菌剂的使用密切相关,以减少由真菌植物病害引起的损失。然而,出现对几种商业杀真菌剂具有抗性的病原体群体是需要控制的普遍现象。因此,需要开发对环境安全且对野生生物和人类毒性低的新型杀菌剂化合物。在这项研究中,测试了双嘧啶-2-基硫基甲烷(ptm),双嘧啶-2-基硫基乙烷(pte)和双嘧啶-2-基硫基己烷(pth)的新型有机锡(IV)衍生物。对抗植物病原体,以评估其作为潜在杀菌剂的活性。与有机锡(IV)衍生物相反,双(嘧啶-2-基硫基)烷烃没有活性。 5-配位的三苯基锡(IV)衍生物在广泛的浓度范围内是活性最高的化合物。这项研究表明,微生物对有机锡(IV)前体的酸特性敏感。

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