IDEAS home Printed from https://ideas.repec.org/a/nat/nature/v631y2024i8020d10.1038_s41586-024-07579-7.html
   My bibliography  Save this article

Stereospecific alkenylidene homologation of organoboronates by SNV reaction

Author

Listed:
  • Miao Chen

    (University of Chicago)

  • Christian D. Knox

    (University of Pittsburgh)

  • Mithun C. Madhusudhanan

    (University of Pittsburgh)

  • Thomas H. Tugwell

    (University of Pittsburgh)

  • Coco Liu

    (University of Chicago)

  • Peng Liu

    (University of Pittsburgh)

  • Guangbin Dong

    (University of Chicago)

Abstract

Concerted nucleophilic substitution, known as SN2 reaction, is a fundamental organic transformation used in synthesis to introduce new functional groups and construct carbon–carbon and carbon–heteroatom bonds1. SN2 reactions typically involve backside attack of a nucleophile to the σ* orbital of a C(sp3)–X bond (X = halogen or other leaving group), resulting in complete inversion of a stereocentre2. By contrast, the corresponding stereoinvertive nucleophilic substitution on electronically unbiased sp2 vinyl electrophiles, namely concerted SNV(σ) reaction, is much rarer, and so far limited to carefully designed substrates mostly in ring-forming processes3,4. Here we show that concerted SNV reactions can be accelerated by a proposed strain-release mechanism in metallated complexes, leading to the development of a general and stereospecific alkenylidene homologation of diverse organoboronates. This method enables the iterative incorporation of multiple alkenylidene units, giving cross-conjugated polyenes that are challenging to prepare otherwise. Further application to the synthesis of bioactive compounds containing multi-substituted alkenes is also demonstrated. Computational studies suggest an unusual SN2-like concerted pathway promoted by diminishing steric strain in the square planar transition state, which explains the high efficiency and stereoinversive feature of this metallate SNV reaction.

Suggested Citation

  • Miao Chen & Christian D. Knox & Mithun C. Madhusudhanan & Thomas H. Tugwell & Coco Liu & Peng Liu & Guangbin Dong, 2024. "Stereospecific alkenylidene homologation of organoboronates by SNV reaction," Nature, Nature, vol. 631(8020), pages 328-334, July.
  • Handle: RePEc:nat:nature:v:631:y:2024:i:8020:d:10.1038_s41586-024-07579-7
    DOI: 10.1038/s41586-024-07579-7
    as

    Download full text from publisher

    File URL: https://www.nature.com/articles/s41586-024-07579-7
    File Function: Abstract
    Download Restriction: Access to the full text of the articles in this series is restricted.

    File URL: https://libkey.io/10.1038/s41586-024-07579-7?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    As the access to this document is restricted, you may want to search for a different version of it.

    More about this item

    Statistics

    Access and download statistics

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:nat:nature:v:631:y:2024:i:8020:d:10.1038_s41586-024-07579-7. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    We have no bibliographic references for this item. You can help adding them by using this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: Sonal Shukla or Springer Nature Abstracting and Indexing (email available below). General contact details of provider: http://www.nature.com .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.