4.8 Article

Monitoring Reaction Intermediates to Predict Enantioselectivity Using Mass Spectrometry

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 61, Issue 36, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.202205720

Keywords

Asymmetric Catalysis; Ion Mobility Spectrometry; Kinetics; Organocatalysis; Reactive Intermediates

Funding

  1. Dutch Research Council (NWO) [OCENW.KLEIN.348]

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This study introduces a simple and rapid method for determining enantioselectivities based on mass spectrometry. By using ion mobility separation and delayed reactant labeling experiments, the method can link mass spectra with reaction kinetics to predict the enantioselectivity of the overall reaction.
Enantioselective reactions are at the core of chemical synthesis. Their development mostly relies on prior knowledge, laborious product analysis and post-rationalization by theoretical methods. Here, we introduce a simple and fast method to determine enantioselectivities based on mass spectrometry. The method is based on ion mobility separation of diastereomeric intermediates, formed from a chiral catalyst and prochiral reactants, and delayed reactant labeling experiments to link the mass spectra with the reaction kinetics in solution. The data provide rate constants along the reaction paths for the individual diastereomeric intermediates, revealing the origins of enantioselectivity. Using the derived kinetics, the enantioselectivity of the overall reaction can be predicted. Hence, this method can offer a rapid discovery and optimization of enantioselective reactions in the future. We illustrate the method for the addition of cyclopentadiene (CP) to an alpha,beta-unsaturated aldehyde catalyzed by a diarylprolinol silyl ether.

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