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October 9, 2025Chemistry - A European Journal3 citationsOpen Access

Enantioselective Desymmetrization by Chiral Bifunctional H‐Bonding Organocatalysts

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MUMichal UrbanJVJán Veselý

Key Points

  • Enantioselective desymmetrization effectively generates chiral molecules from achiral substrates, benefiting synthesis.
  • Organocatalysis provides a metal-free and environmentally friendly approach, revolutionizing traditional asymmetric catalysis.
  • Chiral bifunctional organocatalysts, notably cinchona alkaloids, enhance hydrogen activation in various desymmetrization reactions.
  • Methods discussed include applications for meso anhydrides, diols, amines, and other carbonyl derivatives, showcasing versatility.

Abstract

Abstract Enantioselective desymmetrization has emerged as an effective method for generating highly enriched chiral molecules from achiral compounds. In recent years, organocatalysis has played an increasingly prominent role in this field, offering metal‐free and environmentally benign alternatives to traditional asymmetric catalysis. This review focuses on organocatalytic approaches in desymmetrization reactions that utilize bifunctional hydrogen activation of the substrate by a chiral organocatalyst. The most common types of chiral bifunctional organocatalysts include cinchona alkaloids and their derivatives, such as thioureas, sulfonamides, and squaramides. The following text provides an overview of the enantioselective desymmetrization methods that have been described to date for meso ‐anhydrides, meso ‐diols, amines, small heterocyclic rings, and various carbonyl compound derivatives.

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Cite This Study

Urban et al. (2025) studied this question.

synapsesocial.com/papers/68e7ba40ccde5f1021f64c29https://doi.org/10.1002/chem.202502172
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