Renzi Polyssena, Azzi Emanuele, Ascensio Sylvain, Parisotto Stefano, Sordello Fabrizio, Pellegrino Francesco, Ghigo Giovanni, Deagostino Annamaria
Department of Chemistry, University of Torino Via Pietro Giuria, 7 10125 Torino Italy
Chem Sci. 2023 Feb 10;14(10):2721-2734. doi: 10.1039/d3sc00182b. eCollection 2023 Mar 8.
In this paper, we present the synthetic potential of diarylmethylium tetrafluoroborates as catalysts for the visible light promoted hydrosulfonylation of unactivated alkenes. For the first time, these salts, which are bench stable and easily preparable on a multi-gram scale, were employed as organocatalysts. Interestingly, a catalyst loading of only 1 mol% allowed sulfone products to be efficiently obtained from good-to-excellent yields with high functional-group tolerance and scalability up to 15 mmol of alkene. The mechanistic study, both experimental and computational, presented here, revealed an alternative mechanism for the formation of the key sulfonyl radical. Indeed, the photoactive species was proved not to be the diarylcarbenium salt itself, but two intermediates, a stable S-C adduct and an ion couple, that were formed after its interaction with sodium benzenesulfinate. Upon absorbing light, the ion couple could reach an excited state with a charge-transfer character which gave the fundamental sulfonyl radical. A PCET (proton-coupled electron transfer) closes the catalytic cycle reforming the diarylcarbenium salt.
在本文中,我们展示了二芳基甲基四氟硼酸盐作为可见光促进未活化烯烃氢磺酰化反应催化剂的合成潜力。首次将这些在实验室条件下稳定且易于以多克规模制备的盐用作有机催化剂。有趣的是,仅1 mol%的催化剂负载量就能以良好至优异的产率高效获得砜产物,对官能团具有高耐受性,并且可扩展至15 mmol烯烃。本文所呈现的实验和计算机理研究揭示了关键磺酰基自由基形成的另一种机制。实际上,光活性物种并非二芳基碳鎓盐本身,而是其与苯亚磺酸钠相互作用后形成的两种中间体,即稳定的S-C加合物和离子对。吸收光后,离子对可达到具有电荷转移特征的激发态,从而产生基本的磺酰基自由基。质子耦合电子转移(PCET)使催化循环闭合,重新生成二芳基碳鎓盐。