Pinter Emily N, Bingham Jenna E, AbuSalim Deyaa I, Cook Silas P
Department of Chemistry, Indiana University 800 East Kirkwood Avenue Bloomington IN 47405-7102 USA
Chem Sci. 2019 Dec 16;11(4):1102-1106. doi: 10.1039/c9sc04055b.
Site-selective fluorination of aliphatic C-H bonds remains synthetically challenging. While directed C-H fluorination represents the most promising approach, the limited work conducted to date has enabled just a few functional groups as the arbiters of direction. Leveraging insights gained from both computations and experimentation, we enabled the use of the ubiquitous amine functional group as a handle for the directed C-H fluorination of Csp-H bonds. By converting primary amines to adamantoyl-based fluoroamides, site-selective C-H fluorination proceeds under the influence of a simple iron catalyst in 20 minutes. Computational studies revealed a unique reaction coordinate for the catalytic process and offer an explanation for the high site selectivity.
脂肪族碳氢键的位点选择性氟化在合成方面仍然具有挑战性。虽然导向碳氢键氟化是最有前景的方法,但迄今为止开展的有限工作仅使少数官能团能够作为导向的决定因素。利用从计算和实验中获得的见解,我们实现了将普遍存在的胺官能团用作Csp-H键导向碳氢键氟化的手柄。通过将伯胺转化为金刚烷酰基氟酰胺,在简单铁催化剂的影响下,位点选择性碳氢键氟化在20分钟内即可进行。计算研究揭示了催化过程的独特反应坐标,并为高位点选择性提供了解释。