Formyl-selective deuteration of aldehydes with D2O: Via synergistic organic and photoredox catalysis

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Abstract

Formyl-selective deuteration of aldehydes is of high interest for labeling purposes and for optimizing properties of drug candidates. Herein, we report a mild general method for formyl-selective deuterium labeling of aldehydes with D2O, an inexpensive deuterium source, via a synergistic combination of light-driven, polyoxometalate-facilitated hydrogen atom transfer and thiol catalysis. This highly efficient, scalable reaction showed excellent deuterium incorporation, a broad substrate scope, and excellent functional group tolerance and selectivity and is therefore a practical method for late-stage modification of synthetic intermediates in medicinal chemistry and for generating libraries of deuterated compounds.

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Dong, J., Wang, X., Wang, Z., Song, H., Liu, Y., & Wang, Q. (2020). Formyl-selective deuteration of aldehydes with D2O: Via synergistic organic and photoredox catalysis. Chemical Science, 11(4), 1026–1031. https://doi.org/10.1039/c9sc05132e

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