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Extending Photocatalyst Activity through Choice of Electron Donor

journal contribution
posted on 2023-02-06, 22:31 authored by Felicity Draper, Egan DoevenEgan Doeven, Jacqui AdcockJacqui Adcock, Paul FrancisPaul Francis, Tim ConnellTim Connell
Sacrificial additives are commonly employed in photoredox catalysis as a convenient source of electrons, but what occurs after electron transfer is often overlooked. Tertiary alkylamines initially form radical cations following electron transfer, which readily deprotonate to form strongly reducing, neutral α-amino radicals. Similarly, the oxalate radical anion (C2O4•-) rapidly decomposes to form CO2•- (E0 ≈ −2.2 V vs SCE). We show that not only are these reactive intermediates formed under photoredox conditions, but they can also impact the desired photochemistry, both positively and negatively. Photoredox systems using oxalate as an electron donor are able to engage substrates with greater energy demands, extending reactivity past the energy limits of single and multiphoton transition metal catalysts. Furthermore, oxalate offers better chemoselectivity than the commonly employed triethylamine when reducing substrates with moderate energy requirements.

History

Journal

Journal of Organic Chemistry

Location

Washington, D.C.

ISSN

0022-3263

eISSN

1520-6904

Language

en

Publication classification

C1 Refereed article in a scholarly journal

Publisher

American Chemical Society (ACS)