Song Ting-Ting, Mei Yong-Kang, Liu Yan, Wang Xiao-Yu, Guo Shi-Yu, Ji Ding-Wei, Wan Boshun, Yuan Weiming, Chen Qing-An
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, 116023, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Angew Chem Int Ed Engl. 2024 Jan 8;63(2):e202314304. doi: 10.1002/anie.202314304. Epub 2023 Dec 6.
Bridged benzazepine scaffolds, possessing unique structural and physicochemical activities, are widespread in various natural products and drugs. The construction of these skeletons often requires elaborate synthetic effort with low efficiency. Herein, we develop a simple and divergent approach for constructing various bridged benzazepines by a photocatalytic intermolecular dearomatization of naphthalene derivatives with readily available α-amino acids. The bridged motif is created via a cascade sequence involving photocatalytic 1,4-hydroaminoalkylation, alkene isomerization and cyclization. Interestingly, the diastereoselectivity can be regulated through different reaction modes in the cyclization step. Moreover, aminohydroxylation and its further bromination have also been demonstrated to access highly functionalized bridged benzazepines. Preliminary mechanistic studies have been performed to get insights into the mechanism. This method provides a divergent synthetic approach for construction of highly functionalized bridged benzazepines, which have been otherwise difficult to access.
桥连苯并氮杂卓骨架具有独特的结构和物理化学活性,广泛存在于各种天然产物和药物中。构建这些骨架通常需要精心的合成努力且效率较低。在此,我们开发了一种简单且多样化的方法,通过光催化萘衍生物与易得的α-氨基酸进行分子间脱芳构化反应来构建各种桥连苯并氮杂卓。桥连基序是通过一个涉及光催化1,4-氢氨基烷基化、烯烃异构化和环化的串联反应序列产生的。有趣的是,在环化步骤中可以通过不同的反应模式来调节非对映选择性。此外,还证明了氨基羟基化及其进一步的溴化反应可用于制备高度官能化的桥连苯并氮杂卓。已进行了初步的机理研究以深入了解其反应机理。该方法为构建高度官能化的桥连苯并氮杂卓提供了一种多样化的合成方法,而这些桥连苯并氮杂卓此前难以获得。