Kuwabara Junpei, Kanbara Takaki
Tsukuba Research Center for Energy Materials Science (TREMS), Institute of Pure and Applied Sciences, University of Tsukuba, 1 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8573, Japan.
Institute of Pure and Applied Sciences, University of Tsukuba, 1 1-1-1 Tennodai, Tsukuba, Ibaraki, 305-8573, Japan.
Chempluschem. 2024 Jan;89(1):e202300400. doi: 10.1002/cplu.202300400. Epub 2023 Oct 26.
Small molecules and polymers with conjugated structures can be used as organic optoelectronic materials. These molecules have conventionally been synthesized by cross-coupling reactions; however, in recent years, direct functionalization of C-H bonds has been used to synthesize organic optoelectronic materials. Representative reactions include direct arylation reactions (C-H/C-X couplings, with X being halogen or pseudo-halogen) and cross-dehydrogenative coupling (C-H/C-H cross-coupling) reactions. Although these reactions are convenient for short-step synthesis, they require regioselectivity in the C-H bonds and suppression of undesired homo-coupling side reactions. This review introduces examples of the synthesis of organic optoelectronic materials using two types of direct C-H functionalization reactions. In addition, we summarize our recent activities in the development of direct C-H functionalization reactions using fluorobenzenes as substrates. This review covers the reaction mechanism and material properties of the resulting products.
具有共轭结构的小分子和聚合物可用作有机光电子材料。这些分子传统上是通过交叉偶联反应合成的;然而,近年来,C-H键的直接功能化已被用于合成有机光电子材料。代表性反应包括直接芳基化反应(C-H/C-X偶联,其中X为卤素或拟卤素)和交叉脱氢偶联(C-H/C-H交叉偶联)反应。尽管这些反应便于进行短步骤合成,但它们需要C-H键的区域选择性并抑制不期望的均偶联副反应。本综述介绍了使用两种类型的直接C-H功能化反应合成有机光电子材料的实例。此外,我们总结了我们最近以氟苯为底物开发直接C-H功能化反应的活动。本综述涵盖了所得产物的反应机理和材料特性。