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Theoretical studies on Schiff base formation of vitamin b6 analogues

机译:维生素b6类似物席夫碱形成的理论研究

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摘要

A comprehensive study of Schiff base formation of vitamin b6 analogues in gas-phase and water solvation environment is carried out using semiempirical (PM3) quantum mechanics calculations. Vitamin b6 analogues for the gas-phase calculations include one auxiliary water molecule whilst water solvation has been taken into account by using two different models: continuum solvation model on the gas-phase optimized structures and supermolecular approach, in which a complete reoptimization of the gas-phase structures surrounded with explicit water molecules is performed. These calculations result in the description of the geometries of all the intermediates and transition structures along the reaction pathway, which can be divided in three parts: carbinolamine formation, dehydration and imine formation. The carbinolamine is the main intermediate and dehydration is the limiting step of the reaction, in accordance with experimental evidence. The details of the mechanism highlight the key role of internal hydrogen transfers and of the hydrogen bonds from water molecules of the solvation sphere for the occurrence of the reaction.
机译:使用半经验(PM3)量子力学计算,对气相和水溶剂化环境中维生素b6类似物的席夫碱形成进行了全面研究。用于气相计算的维生素b6类似物包括一个辅助水分子,同时通过使用两种不同的模型考虑了水溶剂化:气相优化结构的连续溶剂化模型和超分子方法,其中对气体进行了完全重新优化进行了由显性水分子包围的相结构。这些计算导致描述了沿着反应路径的所有中间体和过渡结构的几何形状,可将其分为三部分:甲醇胺形成,脱水和亚胺形成。根据实验证据,甲醇胺是主要中间体,脱水是反应的限制步骤。该机理的细节强调了内部氢转移和溶剂化球水分子中氢键对于反应发生的关键作用。

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