Dzurka Camelio Emily R, Maday Mitchell, Sarkar Aritra, Jackson James E, Borhan Babak
Department of Green Chemistry and Biochemistry, University of Michigan-Flint, Flint, MI, 48502, USA.
Department of Chemistry, Michigan State University, 578 S. Shaw Rd, East Lansing, MI, 48824, USA.
Chemistry. 2025 Jan 2;31(1):e202403108. doi: 10.1002/chem.202403108. Epub 2024 Nov 22.
The stereochemistry of the uncatalyzed chlorolactonization of 4-phenylpent-4-enoic acid at room temperature was examined to probe the reaction's intrinsic diastereoselectivities as a function of chlorenium ion donor, solvent polarity, and reactant concentration ranges. Kinetic studies using Variable Time Normalization Analysis (VTNA) revealed differing reaction orders for the syn and anti alkene addition processes. Aided and illustrated by quantum chemical modeling, this detailed mechanistic analysis of the substrate's intrinsic chlorolactonization reactions points to concerted Ad3-type paths for both syn and anti additions. By illuminating the factors selecting for syn- vs anti-addition paths, the results provide key reference points for future studies of stereocontrol in halofunctionalization reactions.
研究了4-苯基戊-4-烯酸在室温下未催化的氯内酯化反应的立体化学,以探究该反应作为氯鎓离子供体、溶剂极性和反应物浓度范围的函数的内在非对映选择性。使用可变时间归一化分析(VTNA)进行的动力学研究揭示了顺式和反式烯烃加成过程不同的反应级数。在量子化学建模的辅助和说明下,对底物的内在氯内酯化反应进行的这种详细机理分析表明顺式和反式加成均通过协同的Ad3型路径进行。通过阐明选择顺式与反式加成路径的因素,这些结果为未来卤官能化反应中的立体控制研究提供了关键参考点。