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DFT studies, spectral and biological activity evaluation of binary and ternary sulfamethazine Fe(III) complexes

机译:DFT研究,二甲和三甲磺胺嘧啶Fe(III)配合物的光谱和生物活性评估

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Coordination of sulfamethazine drug to Fe(III) center 1 led to a significant decrease in the antibacterial activity, but presence of a secondary ligand 2 gave rise to inactive compound.[FeL_3]H_2O (1) and [FeL_2Q]-3H_2O (2) (HL = sulfamethazine and HQ = 8-hydroxyquinoline) have been synthesized, characterized (elemental analysis, FT IR, UV-vis, TGA, magnetic and conductivity), and tested for their antibacterial activity against Staphylococcus aureus and Escherichia coli. Theoretical calculations involving geometry optimization, natural orbital analysis, electronic spectra, and molecular electrostatic potential have been done at the DFT/B3LYP level of theory. The high 3d-electron contribution of 6.71 is accounted to L→ dpe charge transfer. Coordination of HL to Fe (III) in 1 led to a significant decrease in the antibacterial activity, and presence of a secondary ligand in 2 completely abolished it.
机译:磺胺二甲嘧啶药物与Fe(III)中心1的配位导致抗菌活性显着降低,但第二配体2的存在导致无活性化合物。[FeL_3] H_2O(1)和[FeL_2Q] -3H_2O(2) (HL =磺胺二甲嘧啶,HQ = 8-羟基喹啉)已合成,表征(元素分析,FT IR,UV-vis,TGA,磁性和电导率),并测试了其对金黄色葡萄球菌和大肠杆菌的抗菌活性。在DFT / B3LYP的理论水平上已经完成了涉及几何优化,自然轨道分析,电子光谱和分子静电势的理论计算。 6.71的高3d电子贡献与L→dpe电荷转移有关。 1中HL与Fe(III)的配位导致抗菌活性显着降低,而2中存在第二配体则完全消除了它。

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