Xu Qingzhu, Ou Wei, Hou Hao, Wang Qiyuan, Yu Lei, Su Chenliang
College of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002, China.
International Collaborative Laboratory of 2D Materials for Optoelectronic Science & Technology of Ministry of Education, Engineering Technology Research Center for 2D Materials Information Functional Devices and Systems of Guangdong Province, Institute of Microscale Optoelectronics, Shenzhen University, Shenzhen 518060, China.
Org Lett. 2024 May 17;26(19):4098-4103. doi: 10.1021/acs.orglett.4c01174. Epub 2024 May 6.
C-1-deuterated aldehydes are essential building blocks in the synthesis of deuterated chemicals and pharmaceuticals. This has led chemists to devise mild methodologies for their efficient production. Ideally, hydrogen-deuterium exchange (HDE) is the most effective approach. However, the traditional HDE for creating C-1-deuterated aldehydes often requires a complex system involving multiple catalysts and/or ligands. In this study, we present a mild photocatalytic HDE of the formyl C-H bond with DO. This process is facilitated by chlorine radicals that are generated from low-cost FeCl. This strategy demonstrated a broad reaction scope and high functional group tolerance, affording good yields and ≤99% D incorporation. To bridge the gap between research and industrial applications, we designed a new flow photoreactor equipped with a high-intensity light-emitting diode bucket, enabling the synthesis of C-1-deuterated aldehydes on a scale of 85 g. Finally, we successfully produced several important deuterated aldehydes that are integral to the synthesis of deuterated pharmaceuticals.
C-1-氘代醛是合成氘代化学品和药物的重要基石。这促使化学家们设计出温和的方法来高效生产它们。理想情况下,氢-氘交换(HDE)是最有效的方法。然而,传统的用于制备C-1-氘代醛的HDE通常需要一个涉及多种催化剂和/或配体的复杂体系。在本研究中,我们展示了一种用DO对甲酰基C-H键进行温和光催化HDE的方法。该过程由低成本的FeCl产生的氯自由基促进。该策略显示出广泛的反应范围和高官能团耐受性,能提供良好的产率和≤99%的氘掺入率。为了弥合研究与工业应用之间的差距,我们设计了一种配备高强度发光二极管桶的新型流动光反应器,能够以85克的规模合成C-1-氘代醛。最后,我们成功制备了几种对合成氘代药物至关重要的重要氘代醛。