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Selective Asymmetric Transfer Hydrogenation of alpha-Substituted Acetophenones with Bifunctional Oxo-Tethered Ruthenium(II) Catalysts

机译:具有双官能氧代环钌(II)催化剂的α取代的苯乙酮的选择性不对称转移氢化

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摘要

A practical method for the asymmetric transfer hydrogenation of alpha-substituted ketones was developed utilizing oxo-tethered N-sulfonyldiamine-ruthenium complexes. Reduction by HCO2H and HCO2K in a mixed solvent of EtOAc/H2O allowed for the selective synthesis of halohydrins from 2-bromoacetophenone (98%) and 2-chloroacetophenone (99%), leading to suppressed undesired side reactions stemming from formylation under the typical reaction conditions using an azeotropic 5:2 mixture of HCO2H and Et3N. A range of functional groups, such as halogens, methoxy, nitro, dimethylamino, and ester groups, were well tolerated, highlighting the potential of this method. Nearly complete selectivity with a preferable ee was maintained even with a substrate/catalyst (S/C) ratio of 5000. This catalyst system was also effective for the asymmetric reduction of alpha-sulfonated ketones without eroding the leaving group.
机译:利用氧代拴系的N-磺龙二胺 - 钌配合物显造了α取代酮的不对称转移氢化的实际方法。 通过HCO 2H和HCO2K在EtOAc / H2O的混合溶剂中允许选择性合成来自2-溴乙酮(98%)和2-氯乙酮(& 99%)的卤醇,导致抑制来自甲酰化下的不希望的副反应 使用共沸5:2 HCO2H和ET3N混合物的典型反应条件。 一系列官能团,例如卤素,甲氧基,硝基,二甲基氨基和酯基团耐受良好,突出了该方法的潜力。 即使具有5000的基板/催化剂(S / C)比例,将保持与优选的EE的几乎完全的选择性。该催化剂体系也有效地对α-磺化酮的不对称还原而不侵蚀离去基团。

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