Han Kaiming, Liu Hong, Rotella Madeline E, Xu Zeyu, Tao Lizhi, Chen Shufeng, Kozlowski Marisa C, Jia Tiezheng
Research Center for Chemical Biology and Omics Analysis, Department of Chemistry, Southern University of Science and Technology, 1088 Xueyuan Blvd., Shenzhen, Guangdong, P. R. China.
Inner Mongolia Key Laboratory of Fine Organic Synthesis, Department of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot, P. R. China.
Nat Commun. 2024 Jun 4;15(1):4747. doi: 10.1038/s41467-024-49089-0.
The unique features of the sulfenamides' S(II)-N bond lead to interesting stereochemical properties and significant industrial functions. Here we present a chemoselective Chan-Lam coupling of sulfenamides to prepare N-arylated sulfenamides. A tridentate pybox ligand governs the chemoselectivity favoring C-N bond formation, and overrides the competitive C-S bond formation by preventing the S,N-bis-chelation of sulfenamides to copper center. The Cu(II)-derived resting state of catalyst is captured by UV-Vis spectra and EPR technique, and the key intermediate is confirmed by the EPR isotope response using N-labeled sulfenamide. A computational mechanistic study reveals that N-arylation is both kinetically and thermodynamically favorable, with deprotonation of the sulfenamide nitrogen atom occurring prior to reductive elimination. The origin of ligand-controlled chemoselectivity is explored, with the interaction between the pybox ligand and the sulfenamide substrate controlling the energy of the S-arylation and the corresponding product distribution, in agreement with the EPR studies and kinetic results.
亚磺酰胺的S(II)-N键的独特特性导致了有趣的立体化学性质和重要的工业功能。在此,我们展示了一种用于制备N-芳基化亚磺酰胺的亚磺酰胺的化学选择性Chan-Lam偶联反应。一种三齿吡唑啉酮配体控制着有利于C-N键形成的化学选择性,并通过防止亚磺酰胺与铜中心的S,N-双螯合作用来克服竞争性的C-S键形成。通过紫外可见光谱和电子顺磁共振技术捕获了催化剂的Cu(II)衍生的静止状态,并使用N标记的亚磺酰胺通过电子顺磁共振同位素响应确认了关键中间体。一项计算机理研究表明,N-芳基化在动力学和热力学上都是有利的,亚磺酰胺氮原子的去质子化发生在还原消除之前。探索了配体控制的化学选择性的起源,吡唑啉酮配体与亚磺酰胺底物之间的相互作用控制着S-芳基化的能量和相应的产物分布,这与电子顺磁共振研究和动力学结果一致。