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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Comparative studies of mononuclear Ni(II) and UO _2(II) complexes having bifunctional coordinated groups: Synthesis, thermal analysis, X-ray diffraction, surface morphology studies and biological evaluation
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Comparative studies of mononuclear Ni(II) and UO _2(II) complexes having bifunctional coordinated groups: Synthesis, thermal analysis, X-ray diffraction, surface morphology studies and biological evaluation

机译:具有双功能配位基团的单核Ni(II)和UO _2(II)配合物的比较研究:合成,热分析,X射线衍射,表面形态研究和生物学评估

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摘要

Two Schiff base ligands derived from condensation of phthalaldehyde and o-phenylenediamine in 1:2 (L ~1) and 2:1 (L ~2) having bifunctional coordinated groups (NH _2 and CHO groups, respectively) and their metal complexes with Ni(II) and UO _2(II) have been synthesized and characterized by elemental analysis, molar conductance, magnetic susceptibilities and spectral data (IR, 1H NMR, mass and solid reflectance) as well as thermal, XRPD and SEM analysis. The formula [Ni(L ~1)Cl _2]·2.5H _2O, [UO _2(L ~1)(NO _3) _2]·2H _2O, [Ni(L ~2)Cl _2]·1.5H _2O and [UO _2(L ~2)(NO _3)_2] have been suggested for the complexes. The vibrational spectral data show that the ligands behave as neutral ligands and coordinated to the metal ions in a tetradentate manner. The Ni(II) complexes are six coordinate with octahedral geometry and the ligand field parameters: D _q, B, β and LFSE were calculated while, UO _2(II) complexes are eight coordinate with dodecahedral geometry and the force constant, F _(UO) and bond length, R _(UO) were calculated. The thermal decomposition of complexes ended with metal chlorideitrate as a final product and the highest thermal stability is displayed by [UO _2(L ~2)(NO _3) _2] complex. The X-ray powder diffraction data revealed the formation of nano sized crystalline complexes. The SEM analysis provides the morphology of the synthesized compounds and SEM image of [UO _2(L ~2)(NO _3) _2] complex exhibits nano rod structure. The growth-inhibiting potential of the ligands and their complexes has been assessed against a variety of bacterial and fungal strains.
机译:苯甲醛和邻苯二胺在1:2(L〜1)和2:1(L〜2)的缩合反应中衍生的两个Schiff碱配体具有双功能配位基团(分别为NH _2和CHO基团),以及它们与Ni的金属配合物(II)和UO _2(II)已合成,并通过元素分析,摩尔电导,磁化率和光谱数据(IR,1H NMR,质量和固体反射率)以及热,XRPD和SEM分析进行了表征。式[Ni(L〜1)Cl _2]·2.5H _2O,[UO _2(L〜1)(NO _3)_2]·2H _2O,[Ni(L〜2)Cl _2]·1.5H _2O和已经提出了[UO _2(L〜2)(NO _3)_2]。振动光谱数据表明,配体表现为中性配体并以四齿方式与金属离子配位。 Ni(II)配合物是具有八面体几何形状的六个坐标,并且计算出了配体场参数:D _q,B,β和LFSE,而UO _2(II)配合物是具有十二面体几何形状的八个坐标和力常数F _( UO)和键长R_(UO)进行了计算。以[UO _2(L〜2)(NO _3)_2]配合物显示出以金属氯化物/硝酸盐为最终产物的配合物的热分解,并显示出最高的热稳定性。 X射线粉末衍射数据揭示了纳米级晶体络合物的形成。 SEM分析提供了合成化合物的形态,[UO _2(L〜2)(NO _3)_2]配合物的SEM图像显示了纳米棒结构。已经针对多种细菌和真菌菌株评估了配体及其复合物的生长抑制潜力。

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