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Multinuclear nuclear magnetic resonance and density functional theoretical studies on the structure of bisperoxovanadium complexes with bidentate donors

机译:双过氧钒与双齿供体配合物结构的多核核磁共振和密度泛函理论研究

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摘要

Solid state and solution 51V and 13C NMR studies on four fundamental bisperoxovanadium complexes containing bidendate donor ligands were reported, together with DFT calculations of structural and NMR parameters. The 51V solid-state NMR characterization of the four complexes with [VO(O2)2L]n- anion {abbr. bpVL, where L = oxalic acid dianion (ox), pyridine-2-carboxylic acid (pic), bipyridine (bipy), and 1,10-phenanthroline (phen)} show that the ligands have a significant effect on the electric-field gradient tensor, with the quadrupolar coupling constant ranging from 4.0 to 5.8 MHz. The experimental and theoretical results suggest that the vanadium center of bpVpic, bpVphen and bpVbipy in solid state and aqueous solution are all seven-coordinated except that bpVox is six-coordinated in aqueous solution. The steric space hindrance of the organic ligands and the bonding between vanadium with the coordination influences the activity of bpVL complexes.
机译:固态和溶液的51V和13C NMR研究包括四个含有双齿供体配体的基本双过氧钒配合物,以及结构和NMR参数的DFT计算。 [VO(O2)2L] n-阴离子的四种配合物的51V固态NMR表征。 bpVL,其中L =草酸二阴离子(ox),吡啶-2-甲酸(pic),联吡啶(bipy)和1,10-菲咯啉(phen)}表明配体对电场有重要影响梯度张量,四极耦合常数范围为4.0至5.8 MHz。实验和理论结果表明,固态和水溶液中bpVpic,bpVphen和bpVbipy的钒中心均为7配位,但bpVox在水溶液中为6配位。有机配位体的空间位阻以及钒之间的配位键会影响bpVL配合物的活性。

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