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Antimicrobial Activity of Cu(II) and Fe(III) with Pyridine Complexes as Ligands Contrary to Clinical Strains of Bacteria and Fungi Species

机译:Cu(II)和Fe(III)用吡啶配合物作为配体与细菌和真菌物种的临床菌株相反的抗微生物活性

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In this study, green coloured Cu(II) and red coloured Fe(III) complexes of pyridine were prepared and the elemental characterization confirmed their composition. The pyridine complexes of Cu(II) and FeQH) were found very interesting and attractive as potential candidates with antimicrobial activity. Along with this, melting point, molar conductivity measurement, magnetic moment determination, electronic and FTTR spectroscopy were also measured to characterize the prepared complexes. Pyridine acts as monodentate which resulted in formation of square planar and octahedral structure of Cu(II) and Fe(III) complexes, respectively with the nitrogen atom pyridine ring by coordination bond. For antimicrobial activity studies Alternaria alternata, Bacillus cerelus, Botrgodiplodia theobromal, Colletotrichums corcolei, Escherichia coli, Fusarium equiseti, Macrophomina phaseolina, Salmonell typhi and Shigella dysenteriae were used. The prepared complexes showed inhibition against mycelial growth. Although the complexes showed satisfactory inhibition against the tested bacteria and fungi species, both of the complexes were comparatively better against bacteria than fungi compared to ligand.
机译:在本研究中,制备绿色Cu(II)和红色有机硅烷络合物,并使元素表征证实了它们的组合物。 Cu(II)和Feqh的吡啶络合物非常有趣和吸引潜在的抗菌活性。除此之外,还测量熔点,摩尔电导率测量,磁矩测定,电子和FTTR光谱,以表征制备的配合物。吡啶作为单齿,其与通过配位键的氮原子的吡啶环分别导致形成正方形的平面和Cu(II)的八面体结构和Fe(III)络合物的。对于抗微生物活性研究,使用芽孢杆菌,Botrgodiplodia Thobromal,Colletotrichums Corcolei,大肠杆菌,Fuscherium等离子体,麦芽啉样菌,Macrophomina pumpaceolina,Salmonell Typhi和Shighella Dysenteriae。制备的配合物表现出对菌丝体生长的抑制作用。虽然复合物对测试的细菌和真菌物种呈现令人满意的抑制,但与配体相比,这些复合物的抗抗菌性比真菌相对较好。

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