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Science

📅 Published: July 12, 2023 👤 Marcus E. Raichle, Anthony Mastracchio, Jun-Bae Hong et al. 📖 Science 📊 5,923 citations
AI-Generated Summary

The asymmetric α-addition of relatively nonpolar hydrocarbon substrates, such as allyl and aryl groups, to aldehydes and ketones remains a largely unsolved problem in organic synthesis, despite the wide potential utility of direct routes to such products. We reasoned that well-established chiral amine catalysis, which activates aldehydes toward electrophile addition by enamine formation, could be expanded to this important reaction class by applying a single-electron oxidant to create a transien...

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Key Findings
  • 1 We reasoned that well-established chiral amine catalysis, which activates aldehydes toward electrophile addition by enamine formation, could be expanded to this important reaction class by applying a single-electron oxidant to create a transient radical species from the enamine.
  • 2 We demonstrated the concept of singly occupied molecular orbital (SOMO) activation with a highly selective α-allylation of aldehydes, and we here present preliminary results for enantioselective heteroarylations and cyclization/halogenation cascades.
Why It Matters

This work deepens our understanding of the fundamental laws governing the universe, from subatomic particles to cosmic structures.

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Article Details
Source OpenAlex
Category ⚛️ Physics & Space Science
Published Jul 12, 2023
Journal Science
DOI 10.1126/science
Citations 5,923
Authors Marcus E. Raichle, Anthony Mastracchio, Jun-Bae Hong, Kate Ashton, David W C Macmillan