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Density functional theory study of the oxoperoxo vanadium(V) complexes of glycolic acid. Structural correlations with NMR chemical shifts

机译:乙醇酸氧过氧钒(V)配合物的密度泛函理论研究。与NMR化学位移的结构相关性

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摘要

The DFT B3LYP/SBKJC method has been used to calculate the gas-phase optimized geometries of the glycolate oxoperoxo vanadium(V) complexes [V2O2(OO)2(gly)2]2-, [V2O3(OO)(gly)2]2- and [VO(OO)(gly)(H2O)]-. The 51V, 17O, 13C and 1H chemical shifts have been calculated for the theoretical geometries in all-electron DFT calculations at the UDFT-IGLO-PW91 level and have been subsequently compared with the experimental chemical shifts in solution. In spite of being applied to the isolated molecules, the calculations allowed satisfactory reproduction of the multinuclear NMR solution chemical shifts of the complexes, suggesting that the theoretical structures are probably close to those in solution. The effects of structural changes on the 51V and 17O NMR chemical shifts have been analysed using the referred computational methodologies for one of the glycolate complexes and for several small molecules taken as models. These calculations showed that structural modifications far from the metal nucleus do not significantly affect the metal chemical shift. This finding explains why it is possible to establish reference scales that correlate the type of complex (type of metal centre associated with a certain type of ligand) with its typical region of metal chemical shifts. It has also been found that the VO bond length is the dominant geometrical parameter determining both 51V and the oxo 17O in this kind of complex
机译:DFT B3LYP / SBKJC方法已用于计算乙醇酸氧代过氧钒(V)络合物[V2O2(OO)2(gly)2] 2-,[V2O3(OO)(gly)2]的气相优化几何形状2-和[VO(OO)(gly)(H2O)]-。在UDFT-IGLO-PW91级别的全电子DFT计算中,已针对理论几何计算了51V,17O,13C和1H化学位移,随后将其与溶液中的实验化学位移进行了比较。尽管将其应用于分离的分子,但计算仍可以令人满意地再现多核NMR溶液的配合物化学位移,这表明理论结构可能与溶液中的结构接近。使用乙醇酸配合物之一和几种小分子作为模型,使用引用的计算方法分析了结构变化对51V和17O NMR化学位移的影响。这些计算表明,远离金属核的结构修饰不会显着影响金属化学位移。该发现解释了为什么有可能建立参考标度,以将配合物的类型(与某种配体类型关联的金属中心类型)与其典型的金属化学位移区域相关联。还发现,在这种复合物中,VO键的长度是决定51V和OXO 17O的主要几何参数。

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