Zhang Zhenguo, Lv Yongheng, Ong Wan Qing Renee, Zhao Xuefei, Jia Zhenhua, Loh Teck-Peng
College of Advanced Interdisciplinary Science and Technology, Henan University of Technology, Zhengzhou, 450001, P. R. China.
Division of Chemistry and Biological Chemistry, School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Singapore, 637371, Singapore.
Angew Chem Int Ed Engl. 2024 Nov 18;63(47):e202408509. doi: 10.1002/anie.202408509. Epub 2024 Oct 17.
A catalytic metal-free approach for the H/D exchange in aromatic compounds using DO as the terminal deuterating reagent has been developed. This metal-free protocol employs a triaryl carbenium as the mediator and showcases a wide applicability in the late-stage deuteration of various natural products and small-molecule drugs. Gram-scale deuteration was successfully demonstrated with β-Estradiol, highlighting the method's practicability. Detailed mechanistic insights, supported by DFT calculations, unveiled the essential role of in situ generated acidic species in this electrophilic aromatic substitution process. This newly developed method offers a sustainable and versatile alternative to traditional metal-catalyzed H/D exchange techniques, addressing challenges such as the use of expensive metals, impurity formation, and the necessity for residual metal removal from the final products.
已开发出一种无催化金属的方法,用于在芳香族化合物中使用DO作为末端氘化试剂进行H/D交换。这种无金属方案采用三芳基碳正离子作为介质,并在各种天然产物和小分子药物的后期氘化中显示出广泛的适用性。用β-雌二醇成功证明了克级氘化,突出了该方法的实用性。在DFT计算的支持下,详细的机理见解揭示了原位生成的酸性物种在这种亲电芳香取代过程中的重要作用。这种新开发的方法为传统金属催化的H/D交换技术提供了一种可持续且通用替代品,解决了诸如使用昂贵金属、形成杂质以及需要从最终产品中去除残留金属等挑战。