Radical hydroxymethylation of alkyl iodides using formaldehyde as a C1 synthon

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Abstract

Radical hydroxymethylation using formaldehyde as a C1 synthon is challenging due to the reversible and endothermic nature of the addition process. Here we report a strategy that couples alkyl iodide building blocks with formaldehyde through the use of photocatalysis and a phosphine additive. Halogen-atom transfer (XAT) from α-aminoalkyl radicals is leveraged to convert the iodide into the corresponding open-shell species, while its following addition to formaldehyde is rendered irreversible by trapping the transient O-radical with PPh3. This event delivers a phosphoranyl radical that re-generates the alkyl radical and provides the hydroxymethylated product.

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Caiger, L., Sinton, C., Constantin, T., Douglas, J. J., Sheikh, N. S., Juliá, F., & Leonori, D. (2021). Radical hydroxymethylation of alkyl iodides using formaldehyde as a C1 synthon. Chemical Science, 12(31), 10448–10454. https://doi.org/10.1039/d1sc03083c

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