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Stereoselectivity in the epoxidation of carbohydrate-based oxepines

机译:碳水化合物基奥氮平环氧化中的立体选择性

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[GRAPHICS] The facial selectivity in the DMDO epoxidation of carbohydrate-based oxepines derived from glucose, galactose, and mannose has been determined by product analysis and density functional theory (DFT, B3LYP/6-31+G**//B3LYP/6-31G*) calculations. Oxepines 3 and 4, derived from D-galactose and D-mannose, largely favor alpha- over beta-epoxidation. The results reported here, along with selectivities in the DMDO-mediated epoxidation Of D-xylose-based oxepine I and D-glucose-based oxepines 2 and 5 reported earlier, support a model in which electronic effects, guided by the stereochemistry of the oxygens on the oxepine ring, largely determine the stereo selectivity of epoxidation. Other contributing factors included conformational issues in the oxepine's transition state relative to the reactant, the asynchronicity in bond formation of the epoxide, and the overall steric bulk on the alpha- and beta-faces of the oxepine. Considered together, these factors should generally predict facial selectivity in the DMDO-epoxidation of cyclic enol ethers.
机译:[图形]通过产物分析和密度泛函理论(DFT,B3LYP / 6-31 + G ** // B3LYP / 6)确定了源自葡萄糖,半乳糖和甘露糖的基于碳水化合物的奥西平在DMDO环氧化中的面部选择性-31G *)计算。衍生自D-半乳糖和D-甘露糖的Oxepines 3和4在很大程度上倾向于α-而非β-环氧化。此处报道的结果以及DMDO介导的D-木糖基奥西平I和D-葡萄糖基奥山平2和5的选择性具有较早的报道,它们支持一种模型,该模型中的电子效应受氧的立体化学指导在奥氮平环上,很大程度上决定了环氧化的立体选择性。其他促成因素包括相对于反应物而言,奥氮平过渡态的构象问题,环氧化物键形成的异步性以及奥氮平在α和β面上的整体空间体积。综合考虑,这些因素通常应预测环烯醇醚的DMDO-环氧化中的面部选择性。

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