In this work we report a waste-minimized continuous flow process for the synthesis of β-aminocarbonyls through hydration of N-Boc-2-azetines promoted under acid-catalysed conditions. The greenness of the process is harnessed by the use of flow technology for handling a biphasic segmented flow and the use of an inline liquid-liquid separator allowing the recovery of both the eco-friendly organic solvent (CPME) and the reusable acidic aqueous phase.

Sustainable continuous flow synthesis of β-aminocarbonyls via acid-catalyzed hydration of N-Boc-2-azetines / Andresini, M.; Colella, M.; Dibenedetto, R. S.; Graziano, E.; Romanazzi, G.; Aramini, A.; Degennaro, L.; Luisi, R.. - In: REACTION CHEMISTRY & ENGINEERING. - ISSN 2058-9883. - 8:12(2023), pp. -3209. [10.1039/d3re00342f]

Sustainable continuous flow synthesis of β-aminocarbonyls via acid-catalyzed hydration of N-Boc-2-azetines

Romanazzi G.;
2023-01-01

Abstract

In this work we report a waste-minimized continuous flow process for the synthesis of β-aminocarbonyls through hydration of N-Boc-2-azetines promoted under acid-catalysed conditions. The greenness of the process is harnessed by the use of flow technology for handling a biphasic segmented flow and the use of an inline liquid-liquid separator allowing the recovery of both the eco-friendly organic solvent (CPME) and the reusable acidic aqueous phase.
2023
Sustainable continuous flow synthesis of β-aminocarbonyls via acid-catalyzed hydration of N-Boc-2-azetines / Andresini, M.; Colella, M.; Dibenedetto, R. S.; Graziano, E.; Romanazzi, G.; Aramini, A.; Degennaro, L.; Luisi, R.. - In: REACTION CHEMISTRY & ENGINEERING. - ISSN 2058-9883. - 8:12(2023), pp. -3209. [10.1039/d3re00342f]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/262349
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