Department Chemie and Catalysis Research Center (CRC), Technische Universität München, Lichtenbergstraße 4, 85747, Garching, Germany.
Faculty of Chemistry and Pharmacy, Institute of Organic Chemistry, University of Regensburg, Universitätsstraße 31, 93040, Regensburg, Germany.
Angew Chem Int Ed Engl. 2021 Mar 29;60(14):7920-7926. doi: 10.1002/anie.202016561. Epub 2021 Feb 26.
An enantioselective sulfimidation of 3-thiosubstituted 2-quinolones and 2-pyridones was achieved with a stoichiometric nitrene source (PhI=NNs) and a silver-based catalyst system. Key to the success of the reaction is the use of a chiral phenanthroline ligand with a hydrogen bonding site. The enantioselectivity does not depend on the size of the two substituents at the sulfur atom but only on the binding properties of the heterocyclic lactams. A total of 21 chiral sulfimides were obtained in high yields (44-99 %) and with significant enantiomeric excess (70-99 % ee). The sulfimidation proceeds with high site-selectivity and can also be employed for the kinetic resolution of chiral sulfoxides. Mechanistic evidence suggests the intermediacy of a heteroleptic silver complex, in which the silver atom is bound to one molecule of the chiral ligand and one molecule of an achiral 1,10-phenanthroline. Support for the suggested reaction course was obtained by ESI mass spectrometry, DFT calculations, and a Hammett analysis.
通过使用等摩尔量的氮宾源(PhI=NNs)和银基催化剂体系,实现了 3-硫代 2-喹诺酮和 2-吡啶酮的对映选择性亚磺酰化反应。反应成功的关键是使用带有氢键供体的手性菲咯啉配体。对映选择性不仅取决于硫原子上两个取代基的大小,而且仅取决于杂环内酰胺的结合特性。总共获得了 21 种具有高收率(44-99%)和显著对映体过量(70-99%ee)的手性亚磺酰胺。亚磺酰化反应具有高的位点选择性,也可用于手性亚砜的动力学拆分。机理证据表明存在杂配银络合物中间体,其中银原子与手性配体的一个分子和一个非手性 1,10-菲咯啉的一个分子结合。通过 ESI 质谱、DFT 计算和哈米特分析得到了对建议的反应历程的支持。