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首页> 外文期刊>Tetrahedron, Asymmetry: The International Journal for Repid Publication on all Aspects of Asymmetry in Orgainc, Inorganic, Organometallic, Physical and Bio-Organic Chemistry >A modular design of ruthenium(II) catalysts with chiral C_2-symmetric phosphinite ligands for effective asymmetric transfer hydrogenation of aromatic ketones
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A modular design of ruthenium(II) catalysts with chiral C_2-symmetric phosphinite ligands for effective asymmetric transfer hydrogenation of aromatic ketones

机译:具有手性C_2-对称次膦酸酯配体的钌(II)催化剂的模块化设计,用于芳族酮的有效不对称转移加氢

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摘要

Hydrogen-transfer reduction processes are attracting increasing interest from synthetic chemists in view of their operational simplicity. The new chiral C_2-symmetric ligands N,N′-bis-[(1S)-1-sec-butyl-2-O-(diphenylphosphinite)ethyl]ethanediamide, 1 and N,N′-bis-[(1S)-1-phenyl-2-O-(diphenylphosphinite)ethyl]ethanediamide, 2 and the corresponding ruthenium complexes 3 and 4 have been prepared and their structures have been elucidated by a combination of multi-nuclear NMR spectroscopy, IR spectroscopy, and elemental analysis. ~1H-~(31)P NMR, DEPT, ~1H-~(13)C HETCOR, or ~1H-~1H COSY correlation experiments were used to confirm the spectral assignments. The catalytic activity of complexes 3 and 4 in transfer hydrogenation of acetophenone derivatives by iso-PrOH has also been studied. Under optimized conditions, these chiral ruthenium complexes serve as catalyst precursors for the asymmetric transfer hydrogenation of acetophenone derivatives in iso-PrOH and act as excellent catalysts, giving the corresponding chiral alcohols in 99% yield and up to 75% ee. This transfer hydrogenation is characterized by low reversibility under these conditions.
机译:考虑到氢转移还原工艺的操作简便性,它们吸引了越来越多的合成化学家的兴趣。新的手性C_2对称配体N,N'-双-[((1S)-1-仲丁基-2-O-(二苯基次膦酸酯)乙基]乙二酰胺,1和N,N'-双-[(1S)-已经制备了1-苯基-2-O-((二苯基亚膦酸酯)乙基]乙二酰胺2以及相应的钌配合物3和4,并通过多核NMR光谱,IR光谱和元素分析的组合阐明了它们的结构。使用〜1H-〜(31)P NMR,DEPT,〜1H-〜(13)C HETCOR或〜1H-〜1H COZY相关实验来确认光谱分配。还研究了配合物3和4在通过iso-PrOH转移苯乙酮衍生物的氢化反应中的催化活性。在优化条件下,这些手性钌配合物可作为乙酰苯衍生物在异-PrOH中的不对称转移氢化的催化剂前体,并充当出色的催化剂,以99%的收率和高达75%ee的产率得到相应的手性醇。该转移氢化的特征在于在这些条件下的低可逆性。

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