Coote Susannah C, Pöthig Alexander, Bach Thorsten
Department Chemie, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching (Germany); Current address: Department of Chemistry, Lancaster University, Bailrigg, Lancaster, LA1 4YB (U.K.).
Chemistry. 2015 Apr 27;21(18):6906-12. doi: 10.1002/chem.201500173. Epub 2015 Mar 17.
A strategy for the enantioselective [2+2] photocycloaddition of isoquinolones with alkenes is presented, in which the formation of a supramolecular complex between a chiral template and the substrate ensures high enantioface differentiation by shielding one face of the substrate. Fifteen different electron-deficient alkenes and ten different substituted isoquinolones undergo efficient photocycloaddition, yielding the cyclobutane products in excellent yields and with outstanding regio-, diastereo- and enantioselectivities (up to 99% ee). The mechanism of the reaction is investigated by means of triplet sensitization/quenching and radical clock experiments, the results of which are consistent with the involvement of a triplet excited state and a 1,4-biradical intermediate. The variety of functionalized cyclobutanes obtained using this approach can be further increased by straightforward synthetic transformations of the photoadducts, allowing rapid access to libraries of compounds for various applications.
本文提出了一种异喹啉酮与烯烃对映选择性[2+2]光环加成反应的策略,其中手性模板与底物之间形成超分子复合物,通过屏蔽底物的一个面确保了高对映面区分度。15种不同的缺电子烯烃和10种不同的取代异喹啉酮发生高效光环加成反应,以优异的产率以及出色的区域、非对映和对映选择性(高达99% ee)生成环丁烷产物。通过三重态敏化/猝灭和自由基钟实验研究了反应机理,结果表明反应涉及三重态激发态和1,4-双自由基中间体。通过光加成产物的直接合成转化,可以进一步增加使用该方法获得的功能化环丁烷的种类,从而能够快速获取用于各种应用的化合物库。