Rao Changqing, Zhang Tianze, Huang Hanmin
Key Laboratory of Precision and Intelligent Chemistry, and Department of Chemistry, University of Science and Technology of China, Hefei, 230026, P. R. China.
Nat Commun. 2024 Sep 10;15(1):7924. doi: 10.1038/s41467-024-51532-1.
The incorporation of difluoromethylene (CF) group into chemical molecules often imparts desirable properties such as lipophilicity, binding affinity, and thermal stability. Consequently, the increasing demand for gem-difluoroalkylated compounds in drug discovery and materials science has continued to drive the development of practical methods for their synthesis. However, traditional synthetic methods such as deoxofluorination often confront challenges including complicated substrate synthesis sequences and poor functional group compatibility. In this context, we herein report a metal electron-shuttle catalyzed, modular synthetic methodology for difluoroalkylated compounds by assembling two C(sp) fragments across CF unit in a single step. The approach harnesses a difluoromethylene synthon as a biradical linchpin, achieving the construction of two C(sp)-CF bonds through radical addition to two different π-unsaturated molecules. This catalytic protocol is compatible with broad range of coupling partners including diverse olefins, iminiums, and hydrazones, supporting endeavors in the efficient construction of C(sp)-rich difluoroalkylated molecules.
将二氟亚甲基(CF)基团引入化学分子中通常会赋予其诸如亲脂性、结合亲和力和热稳定性等理想特性。因此,药物研发和材料科学领域对偕二氟烷基化化合物的需求不断增加,持续推动了其合成实用方法的发展。然而,传统的合成方法如脱氟氟化反应常常面临挑战,包括复杂的底物合成步骤和较差的官能团兼容性。在此背景下,我们在此报告一种金属电子穿梭催化的模块化合成方法,用于通过在一步中跨CF单元组装两个C(sp)片段来合成二氟烷基化化合物。该方法利用二氟亚甲基合成子作为双自由基关键中间体,通过自由基加成到两个不同的π-不饱和分子上实现两个C(sp)-CF键的构建。这种催化方案与广泛的偶联伙伴兼容,包括各种烯烃、亚胺离子和腙,为高效构建富含C(sp)的二氟烷基化分子提供了支持。