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金属光氧化还原催化实现的立体选择性苄基C(sp)-H烯基化反应。

Stereoselective benzylic C(sp)-H alkenylation enabled by metallaphotoredox catalysis.

作者信息

Li Yantao, Bai Haonan, Gao Qi, Liu Kai, Han Jie, Li Weipeng, Zhu Chengjian, Xie Jin

机构信息

State Key Laboratory of Coordination Chemistry, Jiangsu Key Laboratory of Advanced Organic Materials, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Chemistry and Chemical Engineering, Nanjing University Nanjing 210023 China.

Green Catalysis Center, and College of Chemistry, Zhengzhou University Zhengzhou 450001 China.

出版信息

Chem Sci. 2024 Jul 8;15(31):12511-12516. doi: 10.1039/d4sc02830a. eCollection 2024 Aug 7.

Abstract

Selective activation of the benzylic C(sp)-H bond is pivotal for the construction of complex organic frameworks. Achieving precise selectivity among C-H bonds with comparable energetic and steric profiles remains a profound synthetic challenge. Herein, we unveil a site- and stereoselective benzylic C(sp)-H alkenylation utilizing metallaphotoredox catalysis. Various linear and cyclic ()-all-carbon tri- and tetrasubstituted olefins can be smoothly obtained. This strategy can be applied to complex substrates with multiple benzylic sites, previously deemed unsuitable due to the uncontrollable site-selectivity. In addition, sensitive functional groups such as terminal alkenyl and TMS groups are compatible under the mild conditions. The exceptional site-selectivity and broad substrate compatibility are attributed to the visible-light catalyzed relay electron transfer-proton transfer process. More importantly, we have extended this methodology to achieve enantioselective benzylic C(sp)-H alkenylation, producing highly enantioenriched products. The applicability and scalability of our protocol are further validated through late-stage functionalization of complex structures and gram-scale operations, underscoring its practicality and robustness.

摘要

苄基C(sp) -H键的选择性活化对于构建复杂有机框架至关重要。在具有相似能量和空间特征的C-H键之间实现精确的选择性仍然是一个重大的合成挑战。在此,我们揭示了一种利用金属光氧化还原催化的位点和立体选择性苄基C(sp) -H烯基化反应。可以顺利获得各种线性和环状()全碳三取代和四取代烯烃。该策略可应用于具有多个苄基位点的复杂底物,这些底物由于位点选择性不可控,以前被认为不适用。此外,诸如末端烯基和TMS基团等敏感官能团在温和条件下是兼容的。这种特殊的位点选择性和广泛的底物兼容性归因于可见光催化的接力电子转移-质子转移过程。更重要的是,我们扩展了这种方法以实现对映选择性苄基C(sp) -H烯基化反应,生成高度对映体富集的产物。我们方法的适用性和可扩展性通过复杂结构的后期官能团化和克级操作进一步得到验证,突出了其实用性和稳健性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9178/11304817/7d678eb0e0a1/d4sc02830a-s1.jpg

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