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Divergent synthetic strategy leading to structurally diverse pyrrolidines and piperidines from common gamma-aminoalkyl butenolide and aldehyde precursors

机译:不同的合成策略可导致由常见的γ-氨基烷基丁烯内酯和醛前体形成结构上不同的吡咯烷和哌啶

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摘要

Condensation between aldehydes and the secondary amino function of 5-(aminoalkyl)furan-2(5H)-ones, obtained by the silyloxyfuran dienolate addition to imine-type derivatives, produces either aminoalkylbenzotriazoles or 1,2,3,4-tetrahydropyridines. The former can be reduced with SmI2 to generate alpha-aminoalkyl radicals that are trapped by the alpha,beta-unsaturated lactone moiety yielding substituted pyrrolidines diastereoselectively, while catalytic hydrogenation of the latter affords isomeric piperidine analogues. Alternatively, SmI2-promoted reduction of tetrahydropyridines in the presence of acid also leads to intermediate alpha-aminoalkyl radicals that participate in inter- or intramolecular olefin addition reactions. Further manipulation of the lactone functionality in various ways gives access to a number of interesting derivatives based upon either a pyrrolidine or a piperidine structural motif. As a result, a high degree of structural diversity is obtained in a few steps starting from a common set of simple materials.
机译:醛与5-(氨基烷基)呋喃-2(5H)-的仲氨基官能团之间的缩合是通过将甲硅烷氧基呋喃二烯酸酯加成亚胺型衍生物而获得的,产生氨基烷基苯并三唑或1,2,3,4-四氢吡啶。前者可用SmI2还原以生成被α,β-不饱和内酯部分捕获的α-氨基烷基自由基,非对映选择性地产生取代的吡咯烷,而后者的催化氢化则提供了哌啶类似物的异构体。或者,在酸的存在下,SmI 2促进的四氢吡啶还原也导致中间的α-氨基烷基自由基参与分子间或分子内烯烃加成反应。以各种方式进一步控制内酯官能度可得到基于吡咯烷或哌啶结构基序的许多有趣的衍生物。结果,从一组常见的简单材料开始,只需几个步骤即可获得高度的结构多样性。

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