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Synthesis DFT Calculation and Antimicrobial Studies of Novel Zn(II) Co(II) Cu(II) and Mn(II) Heteroleptic Complexes Containing Benzoylacetone and Dithiocarbamate

机译:含苯甲酰丙酮和二硫代氨基甲酸酯的新型Zn(II)Co(II)Cu(II)和Mn(II)杂多配合物的合成DFT计算和抗菌研究

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摘要

Heteroleptic complexes of zinc(II), copper(II), manganese(II), and cobalt(II) of the types [MLL′(H2O)2]·nH2O and [MLL′]·nH2O have been synthesized using sodium N-methyl-N-phenyldithiocarbamate (L) and benzoylacetone (L′). The metal complexes were characterized by elemental analysis, electrical conductance, magnetic susceptibility, infrared (IR), and UV-visible spectroscopic studies. The electrical conductance measurements revealed the nonelectrolytic nature of the synthesized complexes. The results of the elemental analyses, magnetic susceptibility measurements, and electronic spectra inferred that the Zn(II) complex adopted a four-coordinate geometry while the Co(II), Cu(II), and Mn(II) complexes assumed octahedral geometries. The IR spectra showed that the metal ions coordinated with the ligands via the S- and O-donor atoms. The geometry, electronic, and thermodynamic parameters of the complexes were obtained from density functional theory (DFT) calculations. The spin density distributions, relative strength of H–bonds, and thermodynamic parameters revealed that the order of stability of the metal complexes is Mn < Co < Cu > Zn. The agar diffusion methods were used to study the antimicrobial activity of the complexes against two Gram positive bacteria (S. aureus and S. pneumoniae), one Gram negative bacterium (E. coli), and two fungi organisms (A. niger and A. candida) and the complexes showed a broad spectrum of activities against the microbes.
机译:使用N-钠合成了[MLL'(H2O)2]·nH2O和[MLL']·nH2O类型的锌(II),铜(II),锰(II)和钴(II)的杂合络合物-N-苯基二硫代氨基甲酸甲酯(L)和苯甲酰丙酮(L')。通过元素分析,电导率,磁化率,红外(IR)和紫外可见光谱研究来表征金属配合物。电导率测量揭示了合成配合物的非电解性质。元素分析,磁化率测量和电子光谱的结果表明,Zn(II)配合物采用四坐标几何,而Co(II),Cu(II)和Mn(II)配合物为八面体几何。红外光谱表明,金属离子通过S-和O-供体原子与配体配位。配合物的几何,电子和热力学参数是从密度泛函理论(DFT)计算中获得的。自旋密度分布,氢键的相对强度以及热力学参数表明,金属配合物的稳定性顺序为Mn Zn。琼脂扩散方法用于研究复合物对两种革兰氏阳性细菌(金黄色葡萄球菌和肺炎链球菌),一种革兰氏阴性细菌(大肠杆菌)和两种真菌生物(黑曲霉和黑曲霉)的抗菌活性。念珠菌和复合物显示出广泛的抗微生物活性。

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