Zang Yongjun, Ma Yunfeng, Xu Qilin, Li Guosi, Chen Naidong, Li Xing, Zhu Fucheng
Anhui Province Key Laboratory for Quality Evaluation and Improvement of Traditional Chinese Medicine, Department of Biological and Pharmaceutical Engineering, West Anhui University, Lu'an, 237012, Anhui, P.R. China.
Anhui Anlito Biological Technology Co., Ltd, Anhui Huoshan Economic and Technological Development Zone, 237200, Anhui, P.R. China.
Org Biomol Chem. 2024 Jan 31;22(5):932-939. doi: 10.1039/d3ob01977b.
A rapid and mild protocol for the exhaustive deoxygenation of various aromatic ketones to corresponding alkanes was described, which was mediated by TiCl and used ammonia borane (AB) as the reductant. This reduction protocol applies to a wide range of substrates in moderate to excellent yields at room temperature. The gram-scale reaction and syntheses of some key building blocks for SGLT2 inhibitors demonstrated the practicability of this methodology. Preliminary mechanistic studies revealed that the ketone is first converted into an alcohol, which then undergoes a carbocation to give the alkane hydrogenolysis.
描述了一种快速温和的方法,可将各种芳香酮彻底脱氧为相应的烷烃,该方法由TiCl介导,使用硼氢化氨(AB)作为还原剂。这种还原方法适用于多种底物,在室温下能以中等至优异的产率得到产物。克级反应以及一些SGLT2抑制剂关键结构单元的合成证明了该方法的实用性。初步机理研究表明,酮首先转化为醇,然后醇经过碳正离子生成烷烃并发生氢解。