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- W3143852224 abstract "Continuous-flow asymmetric hydrogenation has attracted considerable attention in the past several years due to its high potential in the field of organic synthesis. Besides the high catalytic activity, selectivity, and atom economy provided by hydrogenation catalysts, continuous-flow microreactor technology ensures reduced reaction time, increased efficiency, better control and reproducibility, rapid optimization, screening and analysis, and improved process safety. The possibility of process integration enables the synthesis of more complex molecular structures in one multistep flow reaction sequence. Additionally, continuous-flow processes can largely contribute to the understanding of the mechanism of catalytic processes. The present chapter summarizes the development in the field of continuous-flow asymmetric hydrogenation reactions based on different types of catalysts such as chirally modified metal surfaces, chiral organometallic and organocatalysts, and unmodified transition-metal surfaces used in chiral auxiliary-aided synthesis. Homogeneous or heterogeneous systems as well as transfer hydrogenation reactions are discussed." @default.
- W3143852224 created "2021-04-13" @default.
- W3143852224 creator A5045736727 @default.
- W3143852224 creator A5077513614 @default.
- W3143852224 creator A5084288209 @default.
- W3143852224 date "2021-04-04" @default.
- W3143852224 modified "2023-09-30" @default.
- W3143852224 title "Asymmetric Hydrogenation in Continuous-Flow Conditions" @default.
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