Li Fang, Pei Chao, Koenigs Rene M
RWTH Aachen University, Institute of Organic Chemistry Landoltweg 1 D-52074 Aachen Germany
Chem Sci. 2021 Mar 24;12(18):6362-6369. doi: 10.1039/d1sc00495f.
Herein, we report on our studies on the reaction of organoselenium compounds with triazoles under thermal conditions using simple Rh(ii) catalysts. These reactions do not provide the product of classic rearrangement reactions. Instead two different cascade reactions were uncovered. While allyl selenides react in a cascade of sigmatropic rearrangement and selenium-mediated radical cyclization reaction to give dihydropyrroles, cinnamyl selenides undergo a double rearrangement reaction cascade involving a final aza-Cope reaction to give the product of 1,3-difunctionalization. Theoretical and experimental studies were conducted to provide an understanding of the reaction mechanism of these cascade reactions. The former provide an important insight into fundamental question on the nature of the ylide intermediate in rearrangement reactions and reveal that organoselenium compounds take up multiple roles in rearrangement reactions and mediate a free ylide reaction mechanism.
在此,我们报告了我们关于在热条件下使用简单的铑(II)催化剂使有机硒化合物与三唑反应的研究。这些反应并未产生经典重排反应的产物。相反,发现了两种不同的串联反应。烯丙基硒醚通过一系列的σ迁移重排和硒介导的自由基环化反应生成二氢吡咯,而肉桂基硒醚则经历涉及最终氮杂-Cope反应的双重重排反应串联,生成1,3-双官能化产物。我们进行了理论和实验研究,以了解这些串联反应的反应机理。前者为关于重排反应中叶立德中间体性质的基本问题提供了重要见解,并揭示了有机硒化合物在重排反应中发挥多种作用并介导自由叶立德反应机理。