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Dual catalysis for enantioselective convergent synthesis of enantiopure vicinal amino alcohols

机译:对映纯的邻位氨基醇对映选择性聚合的双重催化

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Enantiopure vicinal amino alcohols and derivatives are essential structural motifs in natural products and pharmaceutically active molecules, and serve as main chiral sources in asymmetric synthesis. Currently known asymmetric catalytic protocols for this class of compounds are still rare and often suffer from limited scope of substrates, relatively low regio- or stereoselectivities, thus prompting the development of more effective methodologies. Herein we report a dual catalytic strategy for the convergent enantioselective synthesis of vicinal amino alcohols. The method features a radical-type Zimmerman–Traxler transition state formed from a rare earth metal with a nitrone and an aromatic ketyl radical in the presence of chiral N,N′-dioxide ligands. In addition to high level of enantio- and diastereoselectivities, our synthetic protocol affords advantages of simple operation, mild conditions, high-yielding, and a broad scope of substrates. Furthermore, this protocol has been successfully applied to the concise synthesis of pharmaceutically valuable compounds (e.g., ephedrine and selegiline).
机译:对映纯邻位氨基醇及其衍生物是天然产物和药物活性分子中必不可少的结构基序,并在不对称合成中用作主要的手性来源。目前已知的这类化合物的不对称催化方案仍然很少,并且常常受底物范围有限,相对低的区域选择性或立体选择性的困扰,因此促进了更有效方法的发展。本文中,我们报告了邻位氨基醇的收敛性对映选择性合成的双重催化策略。该方法的特征是在手性N,N'-二氧化物配体存在下,由稀土金属与硝酮和芳族酮基形成的自由基型齐默尔曼-特拉克斯勒过渡态。除了高水平的对映异构和非对映异构选择性外,我们的合成方案还具有操作简单,条件温和,产率高以及底物范围广的优点。此外,该方案已成功地用于简明合成药学上有价值的化合物(例如麻黄碱和司来吉兰)。

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