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Sonochemical synthesis, in vitro evaluation and DFT study of novel phenothiazine base Schiff bases and their nano copper complexes as the precursors for new shaped CuO-NPs

机译:多种子化素合成,体外评估和DFT研究新型吩噻嗪基础席夫基碱及其纳米铜配合物作为新型Cuo-NPS的前体

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The current work reports the ultrasound-assisted synthesis of two nano binuclear copper complexes derived from novel tetradentate (N2O2) phenothiazine based Schiff bases. The synthesized compounds were characterized using the physicochemical methods, including H-1 NMR, C-13 NMR, FE-SEM, Mass, FT-IR, UV-Vis, elemental analysis, magnetic moment and molar conductance measurements. It is found that the geometrical structure of (Cu2LCl4)-L-II-Cl-n is distorted tetrahedral around the copper atoms using the results of H-1 NMR, UV-Vis and magnetic moment studies. In addition, CuO nano particles were produced in the nano range (14.3-12.1 nm) by the thermal decomposition of the copper complexes CuO NPs were characterized using FT-IR, FE-SEM, XRD, UV Vis and photoluminescence methods and indicated a close accordance with the standard pattern. Also, the antioxidant studies revealed that the copper complexes exhibit comparable scavenging effects (against O-2 and OH) with the standard antioxidants, such as vitamin C, while, they show more antioxidant activity than ligands. Similarly, the complexes show more antibacterial activity against four gram positive and gram negative bacteria in comparison to their Schiff base ligands. furthermore, The optimized structure, Molecular orbital (M.O.), Mulliken population analysis (MPA), contour of Electrostatic Potential (ESP) and Molecular Electrostatic Potential (MEP) map of the titled compounds were calculated base on DFT calculations that were carried out at the B3LYP levels of theory with a double basis set LANL2DZ for copper, and 6.311 + G(d,p) basis set for the other atoms.
机译:目前的工作报告了超声辅助合成衍生自新型四烯醇噻嗪基噻吩基噻虫基碱的两种纳米双核铜配合物。使用物理化学方法表征合成化合物,包括H-1 NMR,C-13 NMR,Fe-SEM,质量,FT-IR,UV-Vis,元素分析,磁矩和摩尔传导测量。发现(Cu2LCl4)-L-II-C1-N的几何结构使用H-1 NMR,UV-Vis和磁矩研究的结果在铜原子周围扭曲四面体。此外,通过使用FT-IR,Fe-SEM,XRD,UV VIS和光致发光方法,在纳米范围(14.3-12.1nm)中在纳米范围(14.3-12.1nm)中产生CuO纳米颗粒,CuO NPS的热分解,并指出了近距离按标准模式。此外,抗氧化剂研究表明,铜络合物与标准抗氧化剂如维生素C,铜络合物表现出相当的清除效果(反对O-2和OH),而它们显示出比配体更高的抗氧化活性。类似地,与其Schiff碱配体相比,该综合体展示了对4克阳性和革兰氏阴性细菌的更多抗菌活性。此外,优化的结构,分子轨道(MO),Mulliken群体分析(MPa),静电电位的轮廓(ESP)和标题化合物的分子静电电位(MEP)地图被计算为在进行的DFT计算的基础上B3Lyp的理论水平,双基础设置Lanl2dz用于铜,6.311 + g(d,p)为其他原子设定。

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