Li Chao, Cao Yi-Xuan, Jin Ruo-Xing, Bian Kang-Jie, Qin Zi-Yang, Lan Quan, Wang Xi-Sheng
Hefei National Laboratory for Physical Sciences at the Microscale , Department of Chemistry , Center for Excellence in Molecular Synthesis of CAS , University of Science and Technology of China , Hefei , Anhui 230026 , China . Email:
Chem Sci. 2019 Aug 20;10(40):9285-9291. doi: 10.1039/c9sc02806d. eCollection 2019 Oct 28.
A nickel-catalyzed difluoroalkylation of α-C-H bonds of aryl ketones to furnish highly stereo-defined tetrasubstituted monofluoroalkenes or quaternary alkyl difluorides from secondary or tertiary ketones, respectively, has been established. Mechanistic investigations indicated that these C-H fluoroalkylations proceed a Ni(i)/Ni(iii) catalytic cycle. An obvious fluorine effect was observed in the reaction, and this reaction has demonstrated high stereoselectivity, mild conditions, and broad substrate scopes, thus enabling the late-stage fluoroalkylation of bioactive molecules. This method offers a solution for expedient construction of monofluoroalkenes from readily available materials, and provides an efficient approach for the synthesis of bioactive fluorinated compounds for the discovery of lead compounds in medicinal chemistry.
已实现镍催化芳基酮α-C-H键的二氟烷基化反应,分别从仲酮或叔酮得到具有高度立体构型的四取代单氟烯烃或季碳二氟烷基化物。机理研究表明,这些C-H氟烷基化反应通过Ni(i)/Ni(iii)催化循环进行。该反应中观察到明显的氟效应,且具有高立体选择性、温和的反应条件和广泛的底物范围,从而能够实现生物活性分子的后期氟烷基化。该方法为从易得原料便捷构建单氟烯烃提供了解决方案,并为合成生物活性氟化化合物提供了一种有效方法,有助于在药物化学中发现先导化合物。