Enantioselective Reduction and Sulfenylation of Isoflavanone Derivatives via Bisguanidinium Hypervalent Silicate.
Qiaoqiang LiYuqing DaiXinru XuWentao WuWenchao ChenHong WangChoon Hong TanXinyi YePublished in: Organic letters (2024)
In this work, we describe an enantioselective reduction and sulfenylation of isoflavanone derivatives by an ion pair strategy. The chiral cationic catalyst bisguanidinium ( BG ) is capable of chiral induction in catalytic systems. Silane hydride works as a reductant and helps to form an anionic hypervalent silicate complex and intermediates with substrates to pair with chiral catalyst. A series of umpolung sulfur reagents accomplish electrophilic attack in the presence of a silicate anion. Both chemoselectivity and enantioselectivity are good to excellent to afford a wide scope of 4-oxo-4 H -chromene-3-carbonitrile and S -electrophilic reagents. Further transformations were completed to introduce more applications.