Zhang Deshan, Zou Xin-Nan, Wang Xiao-Ge, Su Jie, Luan Tian-Xiang, Fan Weiliu, Li Pei-Zhou, Zhao Yanli
School of Chemistry and Chemical Engineering, Shandong University, No. 27 Shanda South Road, Ji'nan 250100 Shandong Province, P. R. China.
Analytical Instrumentation Center, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, P. R. China.
ACS Appl Mater Interfaces. 2022 May 25;14(20):23518-23526. doi: 10.1021/acsami.2c04331. Epub 2022 May 10.
On account of their inherent reactive properties, radical reactions play an important role in organic syntheses. The booming photochemistry provides a feasible approach to trigger the generation of radical intermediates in organic reaction processes. Thus, developing effective photocatalysts becomes the key step in radical reactions. In this work, the triphenylamine moiety with photoactivity is successfully embedded in a highly porous and stable metal-organic framework (MOF), and the obtained MOF, namely, Zr-TCA, naturally displays a photoactive property derived from the triphenylamine-based ligand. In photocatalytic studies, the triphenylamine-based Zr-TCA not only exhibits a high catalytic activity on the aerobic oxidation of sulfides the generation of the superoxide radical anion (O) under light irradiation but also shows good efficiency in the trifluoromethylation of arenes and heteroarenes by the formation of the trifluoromethyl radical (CF) as an intermediate. Moreover, the high performance of Zr-TCA can be well maintained over a wide range of substrates in these radical reactions, and the recycled Zr-TCA still retains its excellent photocatalytic activity. The high recyclability and catalytic efficiency to various substrates make the constructed triphenylamine-based Zr-TCA a promising photocatalyst in diverse radical reactions.
由于其固有的反应特性,自由基反应在有机合成中起着重要作用。蓬勃发展的光化学为在有机反应过程中触发自由基中间体的产生提供了一种可行的方法。因此,开发有效的光催化剂成为自由基反应的关键步骤。在这项工作中,具有光活性的三苯胺部分成功地嵌入到一种高度多孔且稳定的金属有机框架(MOF)中,所得到的MOF,即Zr-TCA,自然地展现出源自基于三苯胺的配体的光活性。在光催化研究中,基于三苯胺的Zr-TCA不仅在硫化物的有氧氧化(光照下超氧自由基阴离子(O)的产生)中表现出高催化活性,而且在通过形成三氟甲基自由基(CF)作为中间体对芳烃和杂芳烃进行三氟甲基化反应中也显示出良好的效率。此外,在这些自由基反应中,Zr-TCA在广泛的底物范围内都能很好地保持其高性能,并且回收的Zr-TCA仍然保留其优异的光催化活性。高可回收性和对各种底物的催化效率使得所构建的基于三苯胺的Zr-TCA成为各种自由基反应中一种有前景的光催化剂。