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首页> 外文期刊>Inorganica Chimica Acta >Novel oxovanadium and dioxomolybdenum complexes of tridentate ONO-donor Schiff base ligand: Synthesis, characterization, crystal structures, Hirshfeld surface analysis, DFT computational studies and catalytic activity for the selective oxidation of benzylic alcohols
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Novel oxovanadium and dioxomolybdenum complexes of tridentate ONO-donor Schiff base ligand: Synthesis, characterization, crystal structures, Hirshfeld surface analysis, DFT computational studies and catalytic activity for the selective oxidation of benzylic alcohols

机译:三叉戟Ono-供体Schiff基碱配体的新型氧化铵和二恶英钼络合物:合成,表征,晶体结构,Hirshfeld表面分析,DFT计算研究和苄醇选择性氧化的催化活性

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摘要

Two new oxovanadium and dioxomolybdenum Schiff base complexes, [VvO(L)(OCH3)(CH3OH)] and [MoVIO2(L) (CH2CH3OH)], were synthesized by treating an ONO-donor type Schiff base ligand (H2L) derived by condensation of 5-nitrosalicylaldehyde and nicotinic hydrazide with oxo and dioxo acetylacetonate salts of vanadium and molybdenum, [VO(acac)2 and MoO2(acac)2], respectively. The synthesized ligand and complexes were characterized by various spectroscopic techniques like FT-IR, multinuclear (1H, 13C) NMR, elemental analysis and the most authentic single crystal X-ray diffraction analysis. In both complexes the geometry around the central metal ions was distorted octahedral as revealed by the data collected from diffraction studies. Theoretical calculation of the synthesized compounds were carried out by DFT as well as TD-DFT using B3LYP method by employing the Def2-TZVP basis set. The findings of theoretical data indicated that the calculated results are in accordance with the experimental findings. Moreover, the catalytic efficiencies of both complexes were investigated by oxidizing the benzylic alcohols in the presence of urea hydrogen peroxide (UHP) in acetonitrile.
机译:通过处理由5-硝基水杨醛和烟肼分别与钒和钼的氧代和二氧代乙酰丙酮盐[VO(acac)2和MoO2(acac)2]缩合而成的ONO供体型席夫碱配体(H2L),合成了两种新的氧代钒和二氧代钼席夫碱配合物[VvO(L)(OCH3)(CH3OH)]和[MoVIO2(L)(CH2CH3OH)]。通过FT-IR、多核(1H,13C)NMR、元素分析和最真实的单晶X射线衍射分析等光谱技术对合成的配体和配合物进行了表征。在这两种配合物中,中心金属离子周围的几何结构都是扭曲的八面体,这是从衍射研究中收集的数据所揭示的。利用DFT和基于Def2 TZVP基组的B3LYP方法进行了合成化合物的理论计算。理论数据表明,计算结果与实验结果一致。此外,通过在乙腈中加入过氧化氢脲(UHP)氧化苯甲醇,研究了这两种配合物的催化效率。

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