A photochemoenzymatic halodecarboxylation of ferulic acid was achieved using vanadate-dependent chloroperoxidase as (bio)catalyst and oxygen and organic solvent as sole stoichiometric reagents in a biphasic system. Performance and selectivity were improved through a phase transfer catalyst, reaching a turnover number of 660.000 for the enzyme.

A photochemoenzymatic Hunsdiecker-Borodin-type halodecarboxylation of ferulic acid / Zippilli, C., Bartolome, M.J., Hilberath, T., Botta, L., Hollmann, F., Saladino, R.. - In: CHEMBIOCHEM. - ISSN 1439-7633. - 23:19(2022), pp. 1-4. [10.1002/cbic.202200367]

A photochemoenzymatic Hunsdiecker-Borodin-type halodecarboxylation of ferulic acid

Saladino, Raffaele
2022

Abstract

A photochemoenzymatic halodecarboxylation of ferulic acid was achieved using vanadate-dependent chloroperoxidase as (bio)catalyst and oxygen and organic solvent as sole stoichiometric reagents in a biphasic system. Performance and selectivity were improved through a phase transfer catalyst, reaching a turnover number of 660.000 for the enzyme.
2022
halodecarboxylation; phase-transfer catalysis; photobiocatalysis; photochemoenzymatic reactions; vanadium chloroperoxidase.
01 Pubblicazione su rivista::01a Articolo in rivista
A photochemoenzymatic Hunsdiecker-Borodin-type halodecarboxylation of ferulic acid / Zippilli, C., Bartolome, M.J., Hilberath, T., Botta, L., Hollmann, F., Saladino, R.. - In: CHEMBIOCHEM. - ISSN 1439-7633. - 23:19(2022), pp. 1-4. [10.1002/cbic.202200367]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1766433
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