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Transition Metal (II) Complexes with a Novel Azo-azomethine Schiff Base Ligand: Synthesis, Structural and Spectroscopic Characterization, Thermal Properties and Biological Applications

机译:过渡金属(II)复合物,具有新型偶氮二甲胺席夫碱配体:合成,结构和光谱表征,热性能和生物应用

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摘要

The pyrimidine based azo-linked Schiff base ligand, 5-benzoyl-1-((E)-(2-hydroxy-3-methoxy-5-((E)phenyldiazenyl)benzylidene)amino)-4-phenylpyrimidin-2(1H)-one (HL), and its transition metal (II) complexes were synthesized and defined by using H-1-NMR, C-13-NMR, Elemental analysis, FT-IR, MS, UV-vis, molar conductance, magnetic susceptibility and thermal analysis techniques. According to the conductance data obtained indicate all of the metal complexes have non-electrolytic nature. Square pyramidal geometry for Pd(II) and octahedral geometry for all the other complexes synthesized was concluded from the electronic absorption spectra and magnetic susceptibility measurements of the complexes. Investigation of the significant infrared bands of the active groups in the ligand and the solid complexes alludes that HL is coordinated to the metal ions ONO tridentate manner. Moreover, the absorption and emission properties of the azo-azomethine based ligand and its complexes were investigated. The results obtained show that fluorescence emissions of the ligand and its metal (II) complexes depend on the type of transition metal ions and the derivatives displayed moderate Stokes' shift values between 44 and 107 nm. All the compounds exhibited superb photostability. Further, antioxidant, antimicrobial and pBR322 plasmid DNA cleavage activities were investigated. All compounds showed good DPPH center dot (1,1-diphenyl-2-picrylhydrazyl) radical scavenging activity and complexes of [MnL2]center dot H2O and [NiL2]center dot H2O exhibited excellent metal chelating activity. All the compounds tested demonstrated two strand DNA cleavage activities.
机译:基于嘧啶的偶氮连接的席夫碱配体,5-苯甲酰基-1 - ((E) - (2-羟基-3-甲氧基-5 - ((E)苯基二亚苯基)苄基)氨基)-4-苯基吡啶-2(1H ) - 通过使用H-1-NMR,C-13-NMR,元素分析,FT-IR,MS,UV-VI,摩尔电导,合成和定义其过渡金属(II)复合物和其过渡金属(II)配合物。易感性和热分析技术。根据所获得的电导数据表明所有金属配合物具有非电解性质。从电子吸收光谱和复合物的磁性敏感度测量结束了合成的所有其他复合物的Pd(II)和八面体几何形状的方形锥形锥形几何形状。对配体中的活性基团的显着红外条带的研究酌情酌情将HL与金属离子进行协调的Tridate方式。此外,研究了偶氮 - 偶氮甲磺酰胺配体的吸收和排放性能及其复合物。得到的结果表明,配体及其金属(II)配合物的荧光发射取决于过渡金属离子的类型,衍生物显示在44至107nm之间的中等斯托克斯的换档值。所有化合物都表现出极高的光稳定性。此外,研究了抗氧化剂,抗微生物和PBR322质粒DNA切割活性。所有化合物显示出良好的DPPH中心点(1,1-二苯基-2-富铬酰基)自由基清除活性和络合物[MNL2]中心点H2O和[NIL2]中心点H2O表现出优异的金属螯合活性。所有测试的化合物都证明了两条链DNA切割活性。

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