Department of Chemistry, University of California, Berkeley, CA, USA.
Nature. 2020 Jul;583(7817):548-553. doi: 10.1038/s41586-020-2399-1. Epub 2020 Jun 1.
Tertiary stereogenic centres containing one fluorine atom are valuable for medicinal chemistry because they mimic common tertiary stereogenic centres containing one hydrogen atom, but they possess distinct charge distribution, lipophilicity, conformation and metabolic stability. Although tertiary stereogenic centres containing one hydrogen atom are often set by enantioselective desymmetrization reactions at one of the two carbon-hydrogen (C-H) bonds of a methylene group, tertiary stereocentres containing fluorine have not yet been constructed by the analogous desymmetrization reaction at one of the two carbon-fluorine (C-F) bonds of a difluoromethylene group. Fluorine atoms are similar in size to hydrogen atoms but have distinct electronic properties, causing C-F bonds to be exceptionally strong and geminal C-F bonds to strengthen one another. Thus, exhaustive defluorination typically dominates over the selective replacement of a single C-F bond, hindering the development of the enantioselective substitution of one fluorine atom to form a stereogenic centre. Here we report the catalytic, enantioselective activation of a single C-F bond in an allylic difluoromethylene group to provide a broad range of products containing a monofluorinated tertiary stereogenic centre. By combining a tailored chiral iridium phosphoramidite catalyst, which controls regioselectivity, chemoselectivity and enantioselectivity, with a fluorophilic activator, which assists the oxidative addition of the C-F bond, these reactions occur in high yield and selectivity. The design principles proposed in this work extend to palladium-catalysed benzylic substitution, demonstrating the generality of the approach.
含一个氟原子的三级手性中心对于药物化学很有价值,因为它们模拟了含一个氢原子的常见三级手性中心,但具有独特的电荷分布、亲脂性、构象和代谢稳定性。虽然含一个氢原子的三级手性中心通常通过亚甲基的两个碳-氢键之一的对映选择性去对称化反应来设定,但含氟的三级手性中心尚未通过类似的去对称化反应在二氟亚甲基的两个碳-氟(C-F)键之一上来构建。氟原子的大小与氢原子相似,但具有独特的电子性质,导致 C-F 键异常强,并且偕二氟 C-F 键相互增强。因此,通常是彻底脱氟而不是选择性取代单个 C-F 键,这阻碍了对映选择性取代一个氟原子以形成手性中心的发展。在这里,我们报告了在烯丙基二氟亚甲基中单个 C-F 键的催化、对映选择性活化,以提供广泛的含有单氟化三级手性中心的产物。通过结合控制区域选择性、化学选择性和对映选择性的定制手性铱磷酰胺配体催化剂,以及助于 C-F 键的氧化加成的亲氟活化剂,这些反应以高产率和高选择性进行。本工作中提出的设计原则扩展到钯催化的苄基取代反应,证明了该方法的通用性。