A convenient and safe approach in valorizing carbon monoxide (CO) produced from the photocatalytic reduction of carbon dioxide (CO2) has been investigated. Visible light was used to drive an optimized photocatalytic reduction using a ruthenium trisbipyridine complex as a sensitizer and a rhenium bipyridyl carbonyl complex as a catalyst to perform an efficient reduction of CO2 to CO, which was then simultaneously utilized in a palladium-catalyzed aminocarbonylation reaction at room tem- perature. This approach provides safe handling of the produced CO which also opens the way for a more efficient application of 13C-isotope and 14C-radioisotope-labeled CO2 in pharmaceuti- cally relevant drug labeling.

Visible-Light-Driven Reduction of CO2 to CO and Its Subsequent Valorization in Carbonylation Chemistry and 13C-Isotope Labeling

Del Vecchio A
Methodology
;
2018-01-01

Abstract

A convenient and safe approach in valorizing carbon monoxide (CO) produced from the photocatalytic reduction of carbon dioxide (CO2) has been investigated. Visible light was used to drive an optimized photocatalytic reduction using a ruthenium trisbipyridine complex as a sensitizer and a rhenium bipyridyl carbonyl complex as a catalyst to perform an efficient reduction of CO2 to CO, which was then simultaneously utilized in a palladium-catalyzed aminocarbonylation reaction at room tem- perature. This approach provides safe handling of the produced CO which also opens the way for a more efficient application of 13C-isotope and 14C-radioisotope-labeled CO2 in pharmaceuti- cally relevant drug labeling.
2018
Gotico, P; Del Vecchio, A; Audisio, D; Quaranta, A; Halime, Z; Leibl, W; Aukaloo, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11568/1213158
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