Shibatomi Kazutaka
Institute for Research on Next-generation Semiconductor and Sensing Science (IRES2), Toyohashi University of Technology, 1-1 Hibarigaoka, Tempaku-cho, Toyohashi, 441-8580, Japan.
Chem Rec. 2023 Jul;23(7):e202300061. doi: 10.1002/tcr.202300061. Epub 2023 Apr 12.
This account summarizes our recent efforts in the enantioselective organocatalytic synthesis of chiral halogenated compounds. The enantioselective α-halogenation of aldehydes, decarboxylative chlorination of β-keto acids, and enantioselective C-C bond formation at the trifluoromethylated prochiral carbon to yield the corresponding organohalides with chlorinated, fluorinated, or trifluoromethylated chiral stereogenic centers are discussed. We applied common organocatalysts, such as Jørgensen-Hayashi catalyst and cinchona alkaloid-derivatived catalyst, and developed novel chiral amine catalysts for these reactions. This account also discusses stereospecific derivatizations of the resulting chiral halogenated compounds via nucleophilic substitution. Thus, we synthesized many novel chiral compounds that have not been reported, even as racemates.
本综述总结了我们近期在手性卤代化合物对映选择性有机催化合成方面的工作。讨论了醛的对映选择性α-卤化反应、β-酮酸的脱羧氯化反应以及在三氟甲基化前手性碳上形成对映选择性C-C键以生成具有氯化、氟化或三氟甲基化手性立体中心的相应有机卤化物的反应。我们应用了常见的有机催化剂,如约根森-林催化剂和金鸡纳生物碱衍生催化剂,并开发了用于这些反应的新型手性胺催化剂。本综述还讨论了通过亲核取代对所得手性卤代化合物进行立体专一性衍生化的方法。因此,我们合成了许多即使作为外消旋体也未曾报道过的新型手性化合物。