School of Pharmaceutical and Materials Engineering & Institute for Advanced Studies, Taizhou University, Taizhou, China.
Department of Chemistry, Fudan University, Shanghai, China.
Nat Commun. 2021 Sep 7;12(1):5328. doi: 10.1038/s41467-021-25628-x.
Aliphatic esters are essential constituents of biologically active compounds and versatile chemical intermediates for the synthesis of drugs. However, their preparation from readily available olefins remains challenging. Here, we report a strategy to access aliphatic esters from olefins through a photocatalyzed alkoxycarbonylation reaction. Alkyloxalyl chlorides, generated in situ from the corresponding alcohols and oxalyl chloride, are engaged as alkoxycarbonyl radical fragments under photoredox catalysis. This transformation tolerates a broad scope of electron-rich and electron-deficient olefins and provides the corresponding β-chloro esters in good yields. Additionally, a formal β-selective alkene alkoxycarbonylation is developed. Moreover, a variety of oxindole-3-acetates and furoindolines are prepared in good to excellent yields. A more concise formal synthesis of (±)-physovenine is accomplished as well. With these strategies, a wide range of natural-product-derived olefins and alkyloxalyl chlorides are also successfully employed.
脂肪族酯是生物活性化合物和药物合成中多功能化学中间体的重要组成部分。然而,从易得的烯烃制备它们仍然具有挑战性。在这里,我们报告了一种通过光催化烷氧基羰基化反应从烯烃制备脂肪族酯的策略。相应醇和草酰氯原位生成的烷氧草酰氯,在光氧化还原催化下作为烷氧基羰基自由基片段参与反应。这种转化可以容忍广泛的富电子和缺电子烯烃,并以良好的收率提供相应的β-氯酯。此外,还开发了一种形式上的β-选择性烯烃烷氧基羰基化反应。此外,还以良好至优异的收率制备了各种吲哚-3-乙酸酯和呋喃吲哚啉。(±)-physovenine 的更简洁的形式合成也得以实现。利用这些策略,还成功地使用了广泛的天然产物衍生的烯烃和烷氧草酰氯。