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The expanding utility of continuous flow hydrogenation

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posted on 2025-05-09, 13:09 authored by Peter J. Cossar, Lacey Hizartzidis, Michela I. Simone, Adam McCluskeyAdam McCluskey, Christopher P. Gordon
There has been an increasing body of evidence that flow hydrogenation enhances reduction outcomes across a wide range of synthetic transformations. Moreover flow reactors enhance laboratory safety with pyrophoric catalysts contained in sealed cartridges and hydrogen generated in situ from water. This mini-review focuses on recent applications of flow chemistry to mediate nitro, imine, nitrile, amide, azide, and azo reductions. Methodologies to effect de-aromatisation, hydrodehalogenation, in addition to olefin, alkyne, carbonyl, and benzyl reductions are also examined. Further, protocols to effect chemoselective reductions and enantioselective reductions are highlighted. Together these applications demonstrate the numerous advantages of performing hydrogenation under flow conditions which include enhanced reaction throughput, yields, simplified workup, and the potential applicability to multistep and cascade synthetic protocols.

History

Journal title

Organic and Biomolecular Chemistry

Volume

26

Issue

13

Pagination

7119-7130

Publisher

Royal Society of Chemistry

Language

  • en, English

College/Research Centre

Faculty of Science and Information Technology

School

School of Environmental and Life Sciences

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