Tian Dong, Shi Wenshuo, Sun Xin, Zhao Xiaowei, Yin Yanli, Jiang Zhiyong
Key Laboratory of Natural Medicine and Immuno-Engineering of Henan Province, Henan University, Jinming Campus, Kaifeng, Henan, P. R. China.
School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, P. R. China.
Nat Commun. 2024 May 29;15(1):4563. doi: 10.1038/s41467-024-48982-y.
Photocatalysis through energy transfer has been investigated for the facilitation of [4 + 2] cycloaddition reactions. However, the high reactivity of radical species poses a challenging obstacle to achieving enantiocontrol with chiral catalysts, as no enantioselective examples have been reported thus far. Here, we present the development of catalytic asymmetric [4 + 2] dearomative photocycloaddition involving anthracene and its derivatives with alkenylazaarenes. This accomplishment is achieved by utilizing a cooperative photosensitizer and chiral Brønsted acid catalysis platform. Importantly, this process enables the activation of anthracene substrates through energy transfer from triplet DPZ, thereby initiating a precise and stereoselective sequential transformation. The significance of our work is highlighted by the synthesis of a diverse range of pharmaceutical valuable cycloadducts incorporating attractive azaarenes, all obtained with high yields, ees, and drs. The broad substrate scope is further underscored by successful construction of all-carbon quaternary stereocenters and diverse adjacent stereocenters.
通过能量转移进行的光催化已被研究用于促进[4+2]环加成反应。然而,自由基物种的高反应活性给使用手性催化剂实现对映体控制带来了挑战性障碍,因为迄今为止尚未报道过对映选择性的例子。在此,我们展示了涉及蒽及其衍生物与烯基氮杂芳烃的催化不对称[4+2]脱芳构化光环加成反应的发展。这一成果是通过利用协同光敏剂和手性布朗斯特酸催化平台实现的。重要的是,该过程能够通过三线态DPZ的能量转移激活蒽底物,从而引发精确且立体选择性的顺序转化。我们工作的重要性体现在合成了多种包含有吸引力的氮杂芳烃的具有药物价值的环加成产物,所有产物均以高产率、对映体过量值和非对映体比例获得。全碳季碳立体中心和多样的相邻立体中心的成功构建进一步突出了广泛的底物范围。