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首页> 外文期刊>Advanced synthesis & catalysis >Enantioselective Hydrogenation of β-Keto Esters using Chiral Diphosphine-Ruthenium Complexes: Optimization for Academic and Industrial Purposes and Synthetic Applications
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Enantioselective Hydrogenation of β-Keto Esters using Chiral Diphosphine-Ruthenium Complexes: Optimization for Academic and Industrial Purposes and Synthetic Applications

机译:使用手性二膦-钌配合物对β-酮酯进行对映选择性加氢:用于学术和工业目的及合成应用的优化

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摘要

Enantioselective hydrogenation using chiral complexes between atropisomeric diphosphines and ruthenium is a powerful tool for producing chiral compounds. Using a simple and straightforward in situ catalyst preparation, the conditions were optimized using molecular hydrogen for both academic and industrial purposes. This led to the best conditions and the lowest catalytic ratio required for the pressure used. Hydrogenation of various β-keto esters was efficiently performed at atmospheric and higher pressures, leading to the use of very low catalyst-substrate ratios up to 1/20,000. Asymmetric hydrogenations were used in key-steps towards the total synthesis of corynomycolic acid, Duloxetine and Fluoxetine.
机译:使用对映异构体二膦与钌之间的手性配合物进行对映选择性氢化是生产手性化合物的有力工具。使用简单直接的原位催化剂制备方法,出于学术和工业目的,使用分子氢对条件进行了优化。这导致所用压力所需的最佳条件和最低催化比。各种β-酮酯的加氢反应均在大气压和更高的压力下有效进行,从而导致使用非常低的催化剂/底物比例,最高可达1 / 20,000。不对称氢化被用于迈入金刚烷酸,度洛西汀和氟西汀的总合成的关键步骤。

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