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A remarkably effective copper(II)-dipyridylphosphine catalyst system for the asymmetric hydrosilylation of ketones in air

机译:一种非常有效的铜(II)-二吡啶基膦催化剂体系,用于空气中酮的不对称氢化硅烷化

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摘要

The combination of catalytic amounts of optically active dipyridylphosphine and CuF2 along with hydride donor PhSiH3 generated in situ a remarkably reactive catalyst system (substrate-to-ligand molar ratio up to 100,000) for the highly enantioselective hydrosilylation of a broad spectrum of aryl alkyl ketones (up to 97% enantiomeric excess) in normal atmosphere and at mild conditions (ambient temperature to -20°C, compatible with traces of moisture) in the absence of base additives. Furthermore, a highly effective catalytic asymmetric hydrosilylation of unsymmetrical diarylketones using this catalyst system was also realized (up to 98% enantiomeric excess). The introduction of the dipyridylphosphine ligands in the air-accelerated and inexpensive metal-mediated asymmetric hydrosilylation of ketones makes the present system highly attractive and thus provides an excellent opportunity for practical applications.
机译:催化量的光学活性二吡啶基膦和CuF2以及氢化物供体PhSiH3的结合就地生成了一种反应性极强的催化剂体系(底物与配体的摩尔比高达100,000),用于广谱芳烷基酮的高度对映选择性氢化硅烷化(在正常温度和温和条件下(环境温度为-20°C,与微量水分相容),在没有碱添加剂的情况下,对映体过量可达97%。此外,还实现了使用该催化剂体系的不对称二芳基酮的高效催化不对称硅氢加成反应(对映体过量高达98%)。在空气加速的和廉价的金属介导的酮的不对称氢化硅烷化中引入二吡啶基膦配体使得本系统高度有吸引力,因此为实际应用提供了极好的机会。

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