首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Synthesis,Thermal Characterization and in vitro Antibacterial Assessment of Co(II)and Cd(II)Complexes of Schiff Base Derived from Amoxicillin and Thiophene-2-carbaldehyde
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Synthesis,Thermal Characterization and in vitro Antibacterial Assessment of Co(II)and Cd(II)Complexes of Schiff Base Derived from Amoxicillin and Thiophene-2-carbaldehyde

机译:Schiff碱的CO(II)和CD(II)复合物的合成,热表征和体外抗菌评估来自阿莫西林和噻吩-2-碳甲醛的Schiff碱基

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摘要

A novel A_(mx)T_(C2)ligand was prepared by simultaneous stirring and refluxing of an equimolar mixture of amoxicillin and thiophene-2-carbaldehyde in methanol and was further used to synthesize metal complexes by metalation with cobalt and cadmium salts,taking ligand metal ratio 2:1.They were characterized by elemental microanalysis,FT-TR,mass,UV-visible,~1H NMR,thermal analysis,magnetic moment and molar conductance measurements.The coordination sites in the ligand were verified by their comparative and extensive spectral studies.The detailed exploration of the data suggested octahedral geometry for Co-A_(mx)T_(C2)and tetrahedral geometry for Cd-A_(mx)T_(C2)complexes.The thermodynamic,and kinetic parameters such as E*,ΔH*,ΔS* and ΔG* of various decomposition steps were calculated from TGA curves using the Coats-Redfern method.The molar conductivity data suggested non-electrolytic nature of the complexes.SEM analysis was done to observe their surface morphology.The geometry optimization of the proposed molecular structure of the complexes was achieved by running MM2 calculation in Gaussian supported Cs-ChemOffice Ultra-11 program software.The biological activities had been evaluated in vitro against E.coli,K.pneumonia,P.vulgaris and S.aureus pathogens in order to assess their antibacterial potency.The biological data revealed better growth inhibitory action of the ligand and metal complexes with bacterial pathogens.
机译:通过同时搅拌和回流甲醇中的甲氧嘧啶和噻吩-2-咔啉的等摩尔混合物的同时搅拌和回流来制备新的A_(MX)T_(C2)配体,并进一步用于通过用钴和镉盐来合成金属配合物,采用配体金属比例2:1.They的特征是通过元素微基分析,FT-TR,质量,UV可见,〜1H NMR,热分析,磁矩和摩尔传导测量。配体中的配位位点通过它们的比较和广泛验证光谱研究。数据的详细探索CD-A_(MX)T_(C2)和四面体几何形状的CD-A_(MX)T_(C2)复合物。热力学和动力学参数,如E *,使用涂层 - 铁丝法从TGA曲线计算各种分解步骤的ΔH*,ΔS*和ΔG*。摩尔电导率数据表明复合物的非电解性质。进行分析以观察其表面形态。几何优化通过在高斯支持的CS-Chemoffice超11节目软件中运行MM2计算来实现复合物的分子结构。在体外评估生物活性,对E.coli,K.Pneumonia,P.Vulgaris和S.aureus进行了评估病原体以评估其抗菌性效力。生物数据揭示了具有细菌病原体的配体和金属配合物的更好的生长抑制作用。

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