Multiplicative Stereocontrol in the Light-Driven Deracemization of Benzylic Nitriles

Abstract Light-driven deracemization has emerged as a powerful strategy for the optical enrichment of chiral organic molecules. In numerous cases, a single chiral catalyst promotes both stereoselective cleavage and re-formation of a C–H bond at the stereogenic center. However, methods to establish the mechanisms of these processes and quantify their individual contributions to overall deracemization enantioselectivity remain limited. Here we report a light-driven deracemization of benzylic nitriles with up to 99% yield and 98% ee enabled by cooperative photoredox and chiral phosphate catalysis that achieves high overall enantioselectivity through the combination of two moderately stereoselective steps. The reaction proceeds through a stereoablative sequence of oxidation and deprotonation, followed by stereoselective C–H bond formation to establish the α-nitrile stereocenter. Competition between back electron transfer and deprotonation of a key arene radical cation intermediate results in selective processing of the minor enantiomer in the reaction. The deprotonation step exhibits a primary kinetic isotope effect, enabling the extent of deracemization to be improved upon solvent isotopic substitution. The stereoselectivity of the C–H bond-forming step correlates with the ground-state reduction potential of the photocatalyst, consistent with the involvement of an enantioselective reductive proton-coupled electron transfer. The participation of a single chiral catalyst in two cooperative stereoselective steps produces a non-classical nonlinear effect that is shown to arise from the proposed mechanistic model. More broadly, these studies provide a set of diagnostic tools for analyzing the origins of enantioselectivity in deracemization reactions.

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Publication Details

Journal
Journal of the American Chemical Society
Published
2026-09-25
DOI
https://doi.org/10.1021/jacs.6c15890
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Multiplicative Stereocontrol in the Light-Driven Deracemization of Benzylic Nitriles

Robert R. Knowles, Qiaolin Yan, Justin Y. Wang, Alexander S. Hurlburt et al.
Journal of the American Chemical Society
Radical Photochemical Reactions
article

Multiplicative Stereocontrol in the Light-Driven Deracemization of Benzylic Nitriles

Robert R. Knowles, Qiaolin Yan, Justin Y. Wang, Alexander S. Hurlburt, Y. Emily Du
article en

Abstract

Abstract Light-driven deracemization has emerged as a powerful strategy for the optical enrichment of chiral organic molecules. In numerous cases, a single chiral catalyst promotes both stereoselective cleavage and re-formation of a C–H bond at the stereogenic center. However, methods to establish the mechanisms of these processes and quantify their individual contributions to overall deracemization enantioselectivity remain limited. Here we report a light-driven deracemization of benzylic nitriles with up to 99% yield and 98% ee enabled by cooperative photoredox and chiral phosphate catalysis that achieves high overall enantioselectivity through the combination of two moderately stereoselective steps. The reaction proceeds through a stereoablative sequence of oxidation and deprotonation, followed by stereoselective C–H bond formation to establish the α-nitrile stereocenter. Competition between back electron transfer and deprotonation of a key arene radical cation intermediate results in selective processing of the minor enantiomer in the reaction. The deprotonation step exhibits a primary kinetic isotope effect, enabling the extent of deracemization to be improved upon solvent isotopic substitution. The stereoselectivity of the C–H bond-forming step correlates with the ground-state reduction potential of the photocatalyst, consistent with the involvement of an enantioselective reductive proton-coupled electron transfer. The participation of a single chiral catalyst in two cooperative stereoselective steps produces a non-classical nonlinear effect that is shown to arise from the proposed mechanistic model. More broadly, these studies provide a set of diagnostic tools for analyzing the origins of enantioselectivity in deracemization reactions.

Journal of the American Chemical Society
Princeton University (US)
Openalex Percentile: Top 22%
Radical Photochemical Reactions
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Multiplicative Stereocontrol in the Light-Driven Deracemization of Benzylic Nitriles — Robert R. Knowles, Qiaolin Yan, et al. · Journal of the American Chemical Society (2026) | TGRS Research Map | TGRS