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Electrochemical Oscillatory Baffled Reactors Fabricated with Additive Manufacturing for Efficient Continuous-Flow Oxidations
Author(s) -
Elena Álvarez,
María RomeroFernández,
Diego Iglesias,
Raúl MartínezCuenca,
Obinna Okafor,
Astrid E. Delorme,
Pedro Lozano,
Ruth Goodridge,
Francesca Paradisi,
Darren A. Walsh,
Víctor Sans
Publication year - 2022
Publication title -
acs sustainable chemistry and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.878
H-Index - 109
ISSN - 2168-0485
DOI - 10.1021/acssuschemeng.1c06799
Subject(s) - electrochemistry , mixing (physics) , continuous reactor , substrate (aquarium) , electrode , chemical engineering , materials science , mass transfer , reagent , flow (mathematics) , chemistry , nanotechnology , organic chemistry , catalysis , chromatography , mechanics , physics , oceanography , quantum mechanics , engineering , geology
Electrochemical continuous-flow reactors offer a great opportunity for enhanced and sustainable chemical syntheses. Here, we present a novel application of electrochemical continuous-flow oscillatory baffled reactors (ECOBRs) that combines advanced mixing features with electrochemical transformations to enable efficient electrochemical oxidations under continuous flow at a millimeter distance between electrodes. Different additive manufacturing techniques have been employed to rapidly fabricate reactors. The electrochemical oxidation of NADH, a very sensitive substrate key for the regeneration of enzymes in biocatalytic transformations, has been employed as a benchmark reaction. The oscillatory conditions improved bulk mixing, facilitating the contact of reagents to electrodes. Under oscillatory conditions, the ECOBR demonstrated improved performance in the electrochemical oxidation of NADH, which is attributed to improved mass transfer associated with the oscillatory regime.

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