Center of Excellence for Innovation in Chemistry (PERCH-CIC) and Department of Chemistry, Faculty of Science, Mahidol University, Rama VI Road, Bangkok 10400, Thailand.
J Org Chem. 2012 Oct 5;77(19):8465-79. doi: 10.1021/jo301327s. Epub 2012 Sep 24.
An asymmetric synthesis of gem-difluoromethylenated dihydroxypyrrolizidines and indolizidines is described. The fluoride-catalyzed nucleophilic addition of PhSCF(2)SiMe(3) (1) to chiral imides was achieved in satisfactory yields to provide mixtures of syn- and anti-isomers 6-9 with moderate to good diastereoselectivities. Reductive cleavage of the phenylsulfanyl group followed by intramolecular radical cyclization of the syn-isomers 6-9 occurred under refluxing conditions to afford the corresponding gem-difluoromethylenated 1-azabicyclic compounds 10-13 in moderate yields as a separable mixture of cis- and trans-isomers. The cis-isomers of compounds 10 and 12 and trans-13 were readily transformed to gem-difluoromethylenated dihydroxypyrrolizidines 20 and 27 and indolizidine 28, respectively, by reductive cleavage of the hydroxyl group and organometallic addition followed by hydrogenolysis.
描述了一种不对称合成偕二氟甲基化二氢吡咯里嗪和吲哚里嗪的方法。氟化物催化的 PhSCF(2)SiMe(3)(1)对手性亚胺的亲核加成以令人满意的收率得到了 syn-和 anti-异构体 6-9 的混合物,具有中等至良好的非对映选择性。在回流条件下,通过还原裂解苯硫基基团,然后对 syn-异构体 6-9 进行分子内自由基环化,以中等产率作为顺式和反式异构体的可分离混合物得到相应的偕二氟甲基化 1-氮杂双环化合物 10-13。化合物 10 和 12 的顺式异构体以及反式 13 可以通过还原裂解羟基和有机金属加成,然后进行氢解,很容易转化为偕二氟甲基化二氢吡咯里嗪 20 和 27 以及吲哚里嗪 28。