Zhu Lei, Zhao Bo, Xie Ke, Gui Wu-Tao, Niu Sheng-Li, Zheng Peng-Fei, Chen Ying-Chun, Qi Xiao-Wei, Ouyang Qin
College of Pharmacy, Third Military Medical University Shapingba Chongqing 400038 China
Breast and Thyroid Surgery, Southwest Hospital, Third Military Medical University Shapingba Chongqing 400038 China
Chem Sci. 2024 Jul 18;15(32):13032-13040. doi: 10.1039/d4sc04190a. eCollection 2024 Aug 14.
The Pd(0)-mediated umpolung reaction of an alkyne to achieve -difunctionalization is a potential synthetic methodology, but its insightful activation mechanism of Pd(0)-alkyne interaction has yet to be established. Here, a Pd(0)-π-Lewis base activation mode is proposed and investigated by combining theoretical and experimental studies. In this activation mode, the Pd(0) coordinates to the alkyne group and enhances its nucleophilicity through π-back-donation, facilitating the nucleophilic attack on the aldehyde to generate a -Pd(ii)-vinyl complex. Ligand-effect studies reveal that the more electron-donating one would accelerate the reaction, and the cyclization of the challenging flexible C- or O-tethered substrates has been realized. The origin of regioselectivities is also explicated by the newly proposed metal π-Lewis base activation mode.
钯(0)介导的炔烃极性反转反应以实现双官能化是一种潜在的合成方法,但其关于钯(0)-炔烃相互作用的深刻活化机制尚未确立。在此,通过结合理论和实验研究,提出并研究了一种钯(0)-π-路易斯碱活化模式。在这种活化模式中,钯(0)与炔烃基团配位,并通过π-反馈给电子作用增强其亲核性,促进对醛的亲核进攻以生成一个钯(ii)-乙烯基配合物。配体效应研究表明,给电子能力越强的配体越能加速反应,并且已经实现了具有挑战性的柔性碳或氧连接底物的环化反应。区域选择性的起源也通过新提出的金属π-路易斯碱活化模式得到了解释。