Ali Wajid, Saha Argha, Ge Haibo, Maiti Debabrata
Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409-1061, United States.
JACS Au. 2023 Jun 9;3(6):1790-1799. doi: 10.1021/jacsau.3c00231. eCollection 2023 Jun 26.
The merger of photocatalysis and transition-metal catalysis has recently emerged as an adaptable platform for the development of innovative and environmentally benign synthetic methodologies. In contrast to classical transformation by Pd complexes, photoredox Pd catalysis operates through a radical pathway in the absence of a radical initiator. Using the synergistic merger of photoredox and Pd catalysis, we have developed a highly efficient, regioselective, and general -oxygenation protocol for diverse arenes under mild reaction conditions. The protocol showcases the -oxygenation of phenylacetic acids and biphenyl carboxylic acids/alcohols and is also amenable for a series of sulfonyls and phosphonyl-tethered arenes, irrespective of the nature and position of the substituents. Unlike thermal C-H acetoxylation which operates through the Pd/Pd catalytic cycle, this metallaphotocatalytic C-H activation involves Pd/Pd/Pd intermediacy. The radical nature of the protocol is established through radical quenching experiments and EPR analysis of the reaction mixture. Furthermore, the catalytic path of this photoinduced transformation is established through control reactions, absorption spectroscopy, luminescence quenching, and kinetic studies.
光催化与过渡金属催化的结合最近已成为开发创新且环境友好型合成方法的一个适应性平台。与钯配合物的经典转化不同,光氧化还原钯催化在没有自由基引发剂的情况下通过自由基途径进行。利用光氧化还原和钯催化的协同结合,我们在温和的反应条件下为多种芳烃开发了一种高效、区域选择性且通用的氧合方法。该方法展示了苯乙酸和联苯羧酸/醇的氧合,并且也适用于一系列磺酰基和磷酰基连接的芳烃,而与取代基的性质和位置无关。与通过钯/钯催化循环进行的热C-H乙酰氧基化不同,这种金属光催化C-H活化涉及钯/钯/钯中间体。该方法的自由基性质通过自由基猝灭实验和反应混合物的电子顺磁共振分析得以确立。此外,这种光诱导转化的催化途径通过对照反应、吸收光谱、发光猝灭和动力学研究得以确立。