Senaweera Sameera, Weaver Jimmie D
Department of Chemistry, Oklahoma State University , Stillwater, Oklahoma 74078, United States.
J Am Chem Soc. 2016 Mar 2;138(8):2520-3. doi: 10.1021/jacs.5b13450. Epub 2016 Feb 18.
Multifluorinated biaryls are challenging to synthesize and yet are an important class of molecules. Because of the difficulty associated with selective fluorination, this class of molecules represent a formidable synthetic challenge. An alternative approach to selective fluorination of biaryls is to couple an arene that already possesses C-F bonds in the desired location. This strategy has been regularly utilized and relies heavily on traditional cross-coupling strategies that employ organometallics and halides (or pseudohalides) in order to achieve the coupling. Herein we report conditions for the photocatalytic coupling via direct functionalization of the C-F bond of a perfluoroarene and C-H bond of the other arene to provide an expedient route to multifluorinated biaryls. The mild conditions and good functional group tolerance enable a broad scope, including access to the anti-Minisci product of basic heterocycles. Finally, we demonstrate the value of the C-F functionalization approach by utilizing the high fluorine content to systematically build complex biaryls containing between two and five Caryl-F bonds via the synergistic use of photocatalysis and SNAr chemistry.
多氟代联芳基化合物的合成具有挑战性,但却是一类重要的分子。由于选择性氟化存在困难,这类分子代表了一项艰巨的合成挑战。联芳基选择性氟化的另一种方法是将已在所需位置具有C-F键的芳烃进行偶联。这种策略已被经常使用,并且严重依赖于传统的交叉偶联策略,这些策略使用有机金属化合物和卤化物(或拟卤化物)来实现偶联。在此,我们报告了通过全氟芳烃的C-F键与另一个芳烃的C-H键直接官能化进行光催化偶联的条件,以提供一条通往多氟代联芳基化合物的便捷途径。温和的条件和良好的官能团耐受性使得适用范围广泛,包括获得碱性杂环的反-Minisci产物。最后,我们通过光催化和SNAr化学的协同使用,利用高氟含量系统地构建含有两个至五个芳基-C-F键的复杂联芳基化合物,证明了C-F官能化方法的价值。