Bellotti Peter, Huang Huan-Ming, Faber Teresa, Glorius Frank
Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstraße 36, 48149Münster, Germany.
School of Physical Science and Technology, ShanghaiTech University, 201210Shanghai, China.
Chem Rev. 2023 Apr 26;123(8):4237-4352. doi: 10.1021/acs.chemrev.2c00478. Epub 2023 Jan 24.
The emergence of modern photocatalysis, characterized by mildness and selectivity, has significantly spurred innovative late-stage C-H functionalization approaches that make use of low energy photons as a controllable energy source. Compared to traditional late-stage functionalization strategies, photocatalysis paves the way toward complementary and/or previously unattainable regio- and chemoselectivities. Merging the compelling benefits of photocatalysis with the late-stage functionalization workflow offers a potentially unmatched arsenal to tackle drug development campaigns and beyond. This Review highlights the photocatalytic late-stage C-H functionalization strategies of small-molecule drugs, agrochemicals, and natural products, classified according to the targeted C-H bond and the newly formed one. Emphasis is devoted to identifying, describing, and comparing the main mechanistic scenarios. The Review draws a critical comparison between established ionic chemistry and photocatalyzed radical-based manifolds. The Review aims to establish the current state-of-the-art and illustrate the key unsolved challenges to be addressed in the future. The authors aim to introduce the general readership to the main approaches toward photocatalytic late-stage C-H functionalization, and specialist practitioners to the critical evaluation of the current methodologies, potential for improvement, and future uncharted directions.
以温和性和选择性为特征的现代光催化的出现,显著推动了创新的后期C-H官能团化方法,这些方法利用低能光子作为可控能源。与传统的后期官能团化策略相比,光催化为实现互补的和/或以前无法实现的区域选择性和化学选择性铺平了道路。将光催化的显著优势与后期官能团化工作流程相结合,为应对药物开发及其他领域的挑战提供了一个可能无与伦比的手段。本综述重点介绍了小分子药物、农用化学品和天然产物的光催化后期C-H官能团化策略,并根据目标C-H键和新形成的键进行分类。重点在于识别、描述和比较主要的机理情况。本综述对已确立的离子化学和光催化自由基体系进行了批判性比较。本综述旨在确立当前的技术水平,并阐明未来有待解决的关键未决挑战。作者旨在向广大读者介绍光催化后期C-H官能团化的主要方法,并向专业从业者介绍对当前方法的批判性评估、改进潜力和未来未知方向。