Shambalova Victoria E, Larkovich Roman V, Aldoshin Alexander S, Lyssenko Konstantin A, Nechaev Mikhail S, Nenajdenko Valentine G
Department of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1, Moscow 119991, Russian Federation.
A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, Leninsky Prospect 29, Moscow 119991, Russian Federation.
J Org Chem. 2024 Aug 16;89(16):11183-11194. doi: 10.1021/acs.joc.4c00726. Epub 2024 Aug 1.
An umpolung strategy was used for the preparation of highly functionalized 3-pyrrolin-2-ones. This approach involves dearomative double chlorination of 1-pyrroles to form highly reactive dichloro-substituted 2-pyrroles. The resulting intermediate reacts selectively with wet alcohols to form the corresponding alkoxy-substituted 3-pyrrolin-2-ones via double nucleophilic substitution in up to 99% yield. The subsequent reaction with different -, -, and -nucleophiles opens access to highly functionalized pyrrolinones bearing additional functionality. The overall outcome of the reported sequence is step-by-step nucleophilic modification of pyrroles with three different nucleophiles. All steps were found to be highly efficient and 100% regioselective. This transformation proceeds under mild conditions and does not require any catalyst to give final products in very high yields. The obtained experimental results are in perfect agreement with the data obtained by theoretical investigation of these reactions.
一种极性翻转策略被用于制备高度官能化的3-吡咯啉-2-酮。该方法涉及对1-吡咯进行去芳构化双氯化反应,以形成高反应性的二氯取代2-吡咯。所得中间体与湿醇选择性反应,通过双亲核取代形成相应的烷氧基取代3-吡咯啉-2-酮,产率高达99%。随后与不同的亲核试剂反应,可得到带有额外官能团的高度官能化吡咯啉酮。所报道序列的总体结果是用三种不同亲核试剂对吡咯进行逐步亲核修饰。发现所有步骤都具有高效性和100%的区域选择性。该转化在温和条件下进行,无需任何催化剂即可以非常高的产率得到最终产物。获得的实验结果与这些反应的理论研究数据完全一致。