Krenske Elizabeth H, Burns Jed M, McGeary Ross P
School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, QLD 4072, Australia.
Org Biomol Chem. 2017 Sep 26;15(37):7887-7893. doi: 10.1039/c7ob01666b.
Recently we reported the aromatic Claisen rearrangements of benzyl ketene acetals, which form one of the few examples of aromatic Claisen rearrangements involving benzyl vinyl ethers (as opposed to allyl aryl ethers, which are the usual substrates for aromatic Claisen rearrangements). Theoretical calculations predict that these rearrangements proceed via a concerted [3,3]-sigmatropic transition state, which is similar in geometry to the TS for the Claisen rearrangement of an allyl aryl ether but has a 4 kcal mol higher barrier. The effects of donor (OMe) and acceptor (CN) substituents on the kinetics of the [3,3]-rearrangement mirror those reported for allyl vinyl ethers: the largest substituent effects are seen for 1-OMe, 2-OMe, 2-CN, and 4-CN substituents, which lower the barrier by 5-9 kcal mol. Substituents on the aromatic ring have smaller effects on the barrier (≤2 kcal mol). The regioselectivities of Claisen rearrangements of meta-substituted benzyl ketene acetals favour 1,2,3-trisubstituted products in preference to the less sterically congested 1,2,4-isomers due to favourable orbital interactions in the 1,2,3 transition state.
最近我们报道了苄基烯酮缩醛的芳香克莱森重排反应,该反应是涉及苄基乙烯基醚的少数芳香克莱森重排反应实例之一(与烯丙基芳基醚相反,烯丙基芳基醚是芳香克莱森重排反应的常见底物)。理论计算预测,这些重排反应通过协同的[3,3] - 迁移重排过渡态进行,其几何结构与烯丙基芳基醚克莱森重排反应的过渡态相似,但能垒高4千卡/摩尔。给体(OMe)和受体(CN)取代基对[3,3] - 重排反应动力学的影响与烯丙基乙烯基醚的报道情况相似:1 - OMe、2 - OMe、2 - CN和4 - CN取代基的取代基效应最大,可使能垒降低5 - 9千卡/摩尔。芳环上的取代基对能垒的影响较小(≤2千卡/摩尔)。间位取代的苄基烯酮缩醛的克莱森重排反应的区域选择性有利于生成1,2,3 - 三取代产物,而不是空间位阻较小的1,2,4 - 异构体,这是由于1,2,3过渡态中有利的轨道相互作用。