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Synthesis, thermal, photo-physical, and biological properties of mononuclear Yb3+, Nd3+, and Dy3+ complexes derived from Schiff base ligands

机译:单核YB3 +,Nd3 +和衍生自Schiff碱配体的DY3 +复合物的合成,热,光学物理和生物学性质

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Six new lanthanide complexes, [Ln(NO3)(2)(L1H2)](NO3).xCHCl(3).yH(2)O {Ln = Yb (1), x = 1, y = 2; Nd (3), x = 2, y = 3 and Dy (5), x = 2, y = 2} and [Ln(NO3)(2)(L2H2)](NO3).xCHCl(3) {Ln = Yb (2), x = 1; Nd (4), x = 2 and Dy (6), x = 2}, were prepared by NNNOO-donor pentadentate Schiff base ligands N,N '-bis(3-methoxysalicylidene)-2,2 '-diaminoethylamine (L1H2) and N,N '-bis(2-hydroxynaphthalidene)-2,2 '-diaminoethylamine (L2H2). These synthesized complexes were characterized by elemental analysis, FT-IR, H-1 NMR, UV-vis spectroscopy, and mass spectrometry. The thermal characteristics of complexes were studied by TGA technique. The observation of the fluorescence emission properties of ligands L1H2 and L2H2 and its Ln(III) complexes in DMSO solution at excitation wavelength of 320 nm shows that the ligands favor energy transfers to the emitting energy level of Ln(III) complexes. The computational calculations using density functional theory of ligands and its Yb((III) complexes were performed to obtain optimized molecular geometry, the highest occupied molecular orbital, the lowest unoccupied molecular orbital and other parameters. The Schiff bases, metal salts, and its Ln(III) complexes were screened for their in vitro antibacterial studies against Staphylococcus aureus, Enterococcus faecalis, Escherichia coli, and Salmonella typhi bacterial strains. The results of the antibacterial investigation show that the lanthanide complexes possess more potent bactericide properties than ligands and metal salts.
机译:六个新的镧系元络合物,[LN(NO3)(2)(2)(L1H2)](NO 3).XCHCL(3).YH(2)O {Ln = Yb(1),X = 1,Y = 2; Nd(3),X = 2,Y = 3和Dy(5),x = 2,Y = 2}和[LN(NO 3)(2)(L2H2)](NO3).xCHCL(3){Ln = YB(2),x = 1; Nd(4),X = 2和Dy(6),x = 2}由NNNOO-供体使胞苷席夫碱配体N,N'-BIS(3-甲氧基丙烯)-2,2'-二胺乙胺(L1H2)制备和N,N'-BIS(2-羟基萘丙烯)-2,2'-二胺乙胺(L2H2)。通过元素分析,FT-IR,H-1 NMR,UV-Vis光谱和质谱,表征这些合成的复合物。通过TGA技术研究了复合物的热特性。在320nm激发波长的DMSO溶液中观察配体L1H2和L2H2及其LN(III)络合物的荧光发射特性及其LN(III)络合物表明,配体最有利于能量转移到LN(III)复合物的发射能级。使用密度函数理论的配体及其Yb((III)配合物进行计算计算以获得优化的分子几何形状,最高占用的分子轨道,最低的未占用的分子轨道和其他参数。Schiff碱,金属盐及其LN (III)筛选复合物对其对葡萄球菌,肠球菌粪菌,大肠杆菌和沙门氏菌细菌菌株的体外抗菌研究。抗菌研究结果表明,镧系有比配体和金属盐具有更有效的杀菌性。

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