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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Experimental and Theoretical Electron Density Study of the Peroxo Function in Oxoperoxo(pyridine-2,6-dicarboxylato)(hexamethylphosphoramide)molybdenum(VI): Implications for Olefin Epoxidatin by Peroxo Transition Metal Complexes
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Experimental and Theoretical Electron Density Study of the Peroxo Function in Oxoperoxo(pyridine-2,6-dicarboxylato)(hexamethylphosphoramide)molybdenum(VI): Implications for Olefin Epoxidatin by Peroxo Transition Metal Complexes

机译:过氧过氧(-2,6-吡啶二甲酸)(六甲基磷酰胺)钼(VI)中过氧官能度的实验和理论电子密度研究:过氧过渡金属配合物对烯烃环氧过氧化物的影响

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摘要

The relative electrophilicity of different peroxo functions is deduced based on crystal structure correlation analysis and high-level ab initio theoretical calculations on a series of model peroxo compounds. Using electron density analysis, it is shown than peroxo functions in some organic compounds (especially dioxiranes) have a pronounced reversal of polarity resulting in a substantial electrophilic character, while in transition metal peroxides they only have an intermediate electrophilicity. The charge density of a transition metal oxidation catalyst, Oxoperoxo(pyridine-2,6-dicarboxylato)(hexamethylphosphoramide)molybdenum(VI), 1 has been determined from combined analysis of 20 K X-ray and neutron diffraction data. The good comparison with results of theoretical calculations (at the HF and B3LYP levels of theory) validates the two approaches and testifies to the suitability of experimental methods even in the presence of heavy atoms. The analysis shows that the Mo-O_(peroxo) bond contains considerable covalent character as revealed by the short Mo-O distance, the large electron density along the bond path, and the negative energy density. In 1, the O-O distance, the atomic charges, and the electrostatic potential around the peroxo group are different from those of dioxiranes. During a direct interaction with olefins, a substantial repolarization of the group is expected to occur, possibly favored by weaker M-O bonds.
机译:基于晶体结构相关性分析和一系列模型过氧化合物的高级从头计算,推论出不同过氧官能团的相对亲电子性。使用电子密度分析表明,某些有机化合物(尤其是二恶英)中的过氧官能团具有明显的极性反转,从而导致明显的亲电特性,而在过渡金属过氧化物中,它们仅具有中等亲电特性。过渡金属氧化催化剂Oxoperoxo(吡啶-2,6-二羧甲基)(六甲基磷酰胺)钼(VI)1的电荷密度已通过对20 K X射线和中子衍射数据的综合分析确定。与理论计算结果(在理论的HF和B3LYP水平上)进行了很好的比较,验证了这两种方法,并证明了即使存在重原子,实验方法的适用性。分析表明,Mo-O_(peroxo)键具有相当大的共价特性,如Mo-O距离短,沿键路径的电子密度大和负能量密度所揭示。在1中,过氧基团周围的O-O距离,原子电荷和静电势与二氧杂环戊烷不同。在与烯烃的直接相互作用期间,预计会发生基团的大量再极化,这可能是由于较弱的M-O键所致。

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