Institute for Catalysis and Graduate School of Life Science, Hokkaido University , Kita-ku, Sapporo 001-0021, Japan.
Department of Natural Science, Graduate School of Science and Technology, Tokushima University , Tokushima 770-8506, Japan.
J Org Chem. 2017 Jul 21;82(14):7503-7511. doi: 10.1021/acs.joc.7b01204. Epub 2017 Jun 30.
A palladium-catalyzed reaction for preparing various endocyclic allenes was developed. The substrates for the reaction were readily available ω-(pronucleophile-tethered)-3-bromo-1,3-alkadienes, and a palladium-catalyst facilitated their unimolecular S2'-cyclization in the presence of potassium tert-butoxide to give the corresponding 9- to 16-membered endocyclic allenes in fair yields of up to 67% together with the dimeric 16- to 32-membered endocyclic bis-allenes and other oligomeric/polymeric intermolecular reaction products. For higher yields of the monomeric endocyclic allenes, the reaction needed to be conducted under high-dilution conditions. Using a chiral palladium catalyst, axially chiral endocyclic allenes were obtained in up to 70% ee.
发展了一种钯催化反应,用于制备各种内环烯丙基。反应的底物是易得的 ω-(亲核试剂连接基)-3-溴-1,3-链烯,在叔丁醇钾存在下,钯催化剂促进它们的单分子 S2'-环化,得到相应的 9-至 16 元内环烯丙基,收率高达 67%,同时还得到二聚的 16-至 32 元内环双烯丙基以及其他的低聚物/聚合物的分子间反应产物。为了提高单体内环烯丙基的收率,反应需要在高稀释条件下进行。使用手性钯催化剂,可以获得高达 70%ee 的轴手性内环烯丙基。