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December 2, 2025Science Advances3 citationsOpen Access

Noncovalent interaction–driven regio- and enantioselective hydroalkynylation of unactivated alkenes to access remote chiral nitriles

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CWChao WangNorth University of China

Key Points

  • The method achieves regioselective and enantioselective synthesis of chiral nitriles with remote stereocenters that serve as valuable intermediates.
  • Control experiments and computational studies confirm the effectiveness of noncovalent π⋯π interactions in this chemical process.
  • This approach explores the functionalization of challenging unactivated alkenes, enhancing the versatility of synthesis in organic chemistry.
  • Findings highlight significant implications for developing complex chiral nitriles, paving the way for innovative synthetic pathways.

Abstract

Unactivated alkenes represent a challenging substrate for selective functionalization, particularly in achieving both regioselectivity and enantioselectivity. In this study, we present a strategy for the regio- and enantioselective hydroalkynylation of unactivated alkenes through the integration of noncovalent π⋯π interactions between the cyano group of the substrate and a chiral bis(oxazoline) ligand. The weak π⋯π interaction was supported by control experiments and computational studies. The method provides a reliable approach for synthesizing chiral nitriles with remote (β-, γ-, and δ-) stereocenters, which exhibit orthogonal reactivities and serve as valuable intermediates for further derivatization into otherwise difficult-to-access compounds. Our work provides a strategy for olefin functionalization and opens up avenues for the selective synthesis of chiral nitriles with remote stereocenters.

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Cite This Study

Chao Wang (2025) studied this question.

synapsesocial.com/papers/692e3da16c9b3ab28c187ca7https://doi.org/10.1126/sciadv.ady4028
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