Liu Wen-Deng, Lee Woojin, Shu Hanyu, Xiao Chuyu, Xu Huiwei, Chen Xiangyang, Houk Kendall N, Zhao Jiannan
Zhang Dayu School of Chemistry, Dalian University of Technology, Dalian116024, P. R. China.
Department of Chemistry and Biochemistry, University of California, California, Los Angeles90095-1569, United States.
J Am Chem Soc. 2022 Dec 14;144(49):22767-22777. doi: 10.1021/jacs.2c11209. Epub 2022 Nov 24.
There have been significant advancements in radical-mediated reactions through covalent-based organocatalysis. Here, we present the generation of iminyl and amidyl radicals via N-heterocyclic carbene (NHC) catalysis, enabling diastereoselective aminoacylation of trisubstituted alkenes. Different from photoredox catalysis, single electron transfer from the deprotonated Breslow intermediate to -aryl hydroxylamine generates an NHC-bound ketyl radical, which undergoes diastereocontrolled cross-coupling with the prochiral C-centered radical. This operationally simple method provides a straightforward access to a variety of pyrroline and oxazolidinone heterocycles with vicinal stereocenters (77 examples, up to >19:1 d.r.). Electrochemical studies of the acyl thiazolium salts support our reaction design and highlight the reducing ability of Breslow-type derivatives. A detailed computational analysis of this organocatalytic system suggests that radical-radical coupling is the rate-determining step, in which π-π stacking interaction between the radical intermediates subtly controls the diastereoselectivity.
通过基于共价键的有机催化,自由基介导的反应取得了重大进展。在此,我们展示了通过N-杂环卡宾(NHC)催化生成亚胺基和酰胺基自由基,实现三取代烯烃的非对映选择性氨基酰化反应。与光氧化还原催化不同,去质子化的布雷斯洛中间体向芳基羟胺的单电子转移生成了一个与NHC结合的酮基自由基,该自由基与前手性碳中心自由基发生非对映控制的交叉偶联反应。这种操作简单的方法为合成各种具有相邻立体中心的吡咯啉和恶唑烷酮杂环化合物提供了直接途径(77个实例,高达>19:1的非对映体比例)。对酰基噻唑鎓盐的电化学研究支持了我们的反应设计,并突出了布雷斯洛型衍生物的还原能力。对该有机催化体系的详细计算分析表明,自由基-自由基偶联是速率决定步骤,其中自由基中间体之间的π-π堆积相互作用巧妙地控制了非对映选择性。