Egami Hiromichi
School of Pharmaceutical Sciences, University of Shizuoka.
Chem Pharm Bull (Tokyo). 2020;68(6):491-511. doi: 10.1248/cpb.c19-00856.
In spite of only a few naturally occurring products having one or more fluorine atoms, organofluorine compounds have been widely utilized in pharmaceutical, agrochemical, and functional material science fields due to the characteristic properties of the fluorine atom. Therefore, the development of new methods for the introduction of fluorine-containing functional groups has been a long-standing research topic. This article discusses our contributions to this area. The first topic is on the trifluoromethylations of C-C multiple bonds using Togni reagent based on our working hypothesis that hypervalent iodine could be activated by coordination of the carbonyl moiety to the Lewis acid catalyst. The second topic relates to asymmetric fluorofunctionalization of alkenes. A newly designed phase-transfer catalyst consisting of a carboxylate anion functioning as a phase-transfer agent and a primary hydroxyl group as a site that captures the anionic substrate was revealed to be an effective catalyst for asymmetric fluorolactonization. Inspired by the mechanistic studies of fluorolactonization, we produced a linked binaphthyl dicarboxylate catalyst, which catalyzes the 6-endo-fluorocyclization and the deprotonative fluorination of allylic amides in a highly enantioselective manner. The third topic is on C-H fluorofunctionalizations using either catalysis or photoactivation. Benzylic trifluoromethylation, which is still a rare reaction, using Togni reagent and aromatic C-H trifluoromethylation using Umemoto reagent under simple photoirradiation conditions were achieved. In addition, the Csp-H fluorination of alkyl phthalimide derivatives is demonstrated.
尽管天然存在的含有一个或多个氟原子的产物很少,但由于氟原子的特性,有机氟化合物已在制药、农用化学品和功能材料科学领域得到广泛应用。因此,开发引入含氟官能团的新方法一直是一个长期的研究课题。本文讨论了我们在这一领域的贡献。第一个主题是基于我们的工作假设,即高价碘可通过羰基部分与路易斯酸催化剂的配位作用而被活化,使用托格尼试剂对碳 - 碳多重键进行三氟甲基化。第二个主题涉及烯烃的不对称氟官能化。一种新设计的相转移催化剂被证明是不对称氟内酯化的有效催化剂,该催化剂由作为相转移剂的羧酸根阴离子和作为捕获阴离子底物位点的伯羟基组成。受氟内酯化机理研究的启发,我们制备了一种联萘二羧酸酯催化剂,它能以高度对映选择性的方式催化烯丙基酰胺的6 - 内型氟环化和去质子氟化反应。第三个主题是关于使用催化或光活化进行C - H氟官能化。实现了使用托格尼试剂进行的苄基三氟甲基化(这仍然是一种罕见的反应)以及在简单光照条件下使用梅本试剂进行的芳族C - H三氟甲基化。此外,还展示了烷基邻苯二甲酰亚胺衍生物的Csp - H氟化反应。