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Visible-Light Unlocked Carbene Insertion and Radical Release in a Structurally Constrained Pincer Phosphorus Compound

  • Avisek Ghosh
  • , Aqeel A. Hussein
  • , Jing Liu
  • , Hao Wu
  • , Saloua Chelli
  • , Nathalie Saffon-Merceron
  • , Xingwei Guo
  • , Sami Lakhdar
  • Université Paul Sabatier
  • Department of Biology
  • Al-Qasim Green University
  • Department of Chemistry
  • Tsinghua University
  • the Southern University of Science and Technology
  • Institut de Chimie de Toulouse
  • Department of Chemistry

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Geometrically constrained phosphines have attracted significant attention for their ability to mediate reactions traditionally associated with transition metals. Here, we show that visible-light excitation unlocks new transition-metal-like reactivity in a well-studied ONO-pincer phosphine. Photochemical generation of α-siloxy carbenes enables rapid P─C bond formation, affording bicyclic phosphines with complete diastereocontrol. These phosphine intermediates readily engage with electrophiles to form air- and moisture-stable phosphoranes, which, upon subsequent irradiation, undergo selective P─C bond homolysis, releasing carbon-centered radicals while regenerating the initial phosphine framework. Time-resolved EPR spectroscopy and DFT calculations reveal that geometric constraint is crucial for accessing both carbene-insertion rearrangement and P─C bond homolysis pathways not observed with conventional phosphines. Together, these findings establish a rare light-driven phosphine → phosphorane →phosphine (P(III) → P(V) → P(III)) reactivity loop and demonstrate how structural constraint enables main-group centers to perform elementary steps analogous to transition metals.

langue originaleAnglais
Numéro d'articlee9531020
journalAngewandte Chemie - International Edition
Volume65
Numéro de publication27
Les DOIs
étatPublié - 1 juil. 2026
Modification externeOui

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