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Organic–inorganic nanocrystal reductase to promote green asymmetric synthesis

机译:有机 - 无机纳米晶体还原酶,促进绿色不对称合成

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An acetophenone reductase from Geotrichum candidum ( Gc APRD) was immobilized by the organic–inorganic nanocrystal method. The Gc APRD nanocrystal presented improved stability and recyclability compared with those of the free Gc APRD. Moreover, the Gc APRD nanocrystal reduced broad kinds of ketones with excellent enantioselectivities to produce beneficial chiral alcohols such as ( S )-1-(3′,4′-dichlorophenyl)ethanol with >99% yield and >99% ee. The robust and versatile properties of the Gc APRD nanocrystal demonstrated an approach to promote green asymmetric synthesis and sustainable chemistry.
机译:通过有机 - 无机纳米晶体法固定来自GeoTrichum Candidum(GC APRD)的苯乙酮还原酶。与免费的GC APRD相比,GC APRD纳米晶体呈现出改善的稳定性和可回收性。此外,GC APRD纳米晶体具有优异的对映选择性的酮类较低,以产生有益的手性醇,例如(S)-1-(3',4'-二氯苯基)乙醇,其具有> 99%收率和> 99%EE。 GC APRD纳米晶体的鲁棒和通用性质表明了一种促进绿色不对称合成和可持续化学的方法。

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