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首页> 外文期刊>Organic letters >Catalytic Asymmetric Propionate Aldol Reactions via Acyl Halide-Aldehyde Cyclocondensations
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Catalytic Asymmetric Propionate Aldol Reactions via Acyl Halide-Aldehyde Cyclocondensations

机译:通过酰基卤-醛环缩合反应催化不对称丙酸酯羟醛反应

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Catalyzed asymmetric acyl halide-aldehyde cyclocondensation (AAC) reactions afford highly enantiomerically enriched 3, 4-disubstituted-2-oxetanones. These reactions constitute catalytic asymmetric propionate aldol additions. An optically active Al(III)-triamine complex (10 mol %) catalyzes the di(isopropyl)ethylamine-mediated cyclocondensation of propionyl bromide and a variety of aldehydes to afford β-lactone adducts with uniformly high enantioselection (90 → 98% ee), diastereoselection (74 168L?98% de), and chemical yields (78-90%). Lactone ring opening reveals that the enantiomerically enriched β-lactones act as surrogates for syn propionate aldol adducts.
机译:催化的不对称酰基卤-醛环缩合(AAC)反应可提供高度对映异构体富集的3,4-二取代-2-氧杂环丁烷。这些反应构成了催化不对称丙酸酯醇醛加成物。光学活性的Al(III)-三胺络合物(10 mol%)催化二(异丙基)乙胺介导的丙酰溴和各种醛的环缩合反应,以提供对映异构度均一高(90→98%ee)的β-内酯加合物,非对映选择性(74≤168L≤98%de)和化学收率(78-90%)。内酯开环表明,对映体富集的β-内酯可作为丙酸丙二醛羟醛加合物的替代物。

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