首页> 外文期刊>The Journal of Organic Chemistry >alpha-Alkylidene-gamma-butyrolactone Formation via Bi(OTf)(3)-Catalyzed, Dehydrative, Ring-Opening Cyclizations of Cyclopropyl Carbinols: Understanding Substituent Effects and Predicting E/Z Selectivity
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alpha-Alkylidene-gamma-butyrolactone Formation via Bi(OTf)(3)-Catalyzed, Dehydrative, Ring-Opening Cyclizations of Cyclopropyl Carbinols: Understanding Substituent Effects and Predicting E/Z Selectivity

机译:通过Bi(OTF)(3) - 催化,脱水,环丙基环醇的催化,脱水,环形环戊内环戊酯形成:了解取代基效应和预测E / Z选择性

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摘要

A Bi(OTf)(3)-atalyzed ring-opening cyclization of (hetero)aryl cyclopropyl carbinols to forrn alpha-alkylidene-gamma-butyrolactones (ABLs) is reported. This transformation represents different chemoselectivity from previous reports that demonstrated formation of (hetero)aryl-fused cyclohexa-1,3-dienes upon acid-promoted cyclopropyl carbinol ring opening. ABLs are obtained in up to 89% yield with a general preference for the E-isomers. Mechanistically, Bi(OTf)(3) serves as a stable and easy to handle precursor to TfOH. TfOH then catalyzes the formation of cyclopropyl carbinyl cations, which undergo ring opening, intramolecular trapping by the neighboring ester group, subsequent hydrolysis, and loss of methanol resulting in the formation of the ABLs. The nature and relative positioning of the substituents on both the carbinol and the cyclopropane determine both chemo- and stereoselective outcomes. Carbinol substituents determine the extent of cyclopropyl carbinyl cation formation. The cyclopropane donor substituents determine the overall reaction chemoselectivity. Weakly stabilizing or electron-poor donor groups provide better yields of the ABL products. In contrast, copious amounts of competing products are observed with highly stabilizing cyclopropane donor substituents. Finally, a predictive model for E/Z selectivity was developed using DFT calculations.
机译:据报道,Bi(OTF)(3)(差异)芳基环丙基猪肉中的催化环环化至Forrnα-烷基丙烷-γ-丁内酯(Abls)。该转化代表了来自先前报告的不同化学选择性,其在酸促进的环丙基咔啉环开口上表现出(杂)芳基熔融环己酰基-1,3-二烯的形成。获得高达89%的产率,并赋予E-异构体的一般偏好。机械地,Bi(OTF)(3)用作稳定且易于处理TFOH的前体。然后TFOH催化环丙基咔啉基阳离子的形成,该氨基丙基阳离子经历开环,邻近酯基团的分子内捕获,随后的水解和甲醇的损失导致形成ABLS。取代基对甲醇和环丙烷的性质和相对定位决定了化学和立体选择性结果。甲醇取代基确定环丙基碳酸阳离子形成的程度。环丙烷供体取代基确定整体反应化学选择性。弱稳定或电子贫松的供体组提供了更好的ABL产品产量。相反,通过高稳定的环丙烷供体取代基观察到大量竞争产品。最后,使用DFT计算开发了E / Z选择性的预测模型。

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