Wang Lijun, Chen Lingxia, Qin Zixuan, Zhao Bihan, Ni Ke, Li Hengzhao, Li Junyu, Duan Hongxia, Ren Fazheng, An Jie
Department of Nutrition and Health, China Agricultural University, Beijing 100193, China.
Department of Chemistry and Innovation Center of Pesticide Research, China Agricultural University, Beijing 100193, China.
J Org Chem. 2024 Jun 21;89(12):8357-8362. doi: 10.1021/acs.joc.4c00104. Epub 2024 May 31.
Oxidation contributes as a secondary driver of the prevailing carbon emission in the chemical industries. To address this issue, photocatalytic aerobic oxidation has emerged as a promising alternative. However, the challenge of achieving satisfactory chemoselectivity and effective use of solar light has hindered progress in this area. In this context, the present study introduces a novel homogeneous photocatalyst, [SmO(OH)(HO)]I(HO) cluster (Sm-OC), via a unique auxiliary ligand-free oxidative hydrolysis. Using Sm-OC as catalyst, a solar photocatalyzed aerobic oxidation of thiols has been developed for the synthesis of valuable disulfides. Remarkably, this catalyst manifested a significant turnover number ≥2000 under tested conditions. Sm-OC-catalyzed aerobic oxidation showcased remarkable chemoselectivity. In thiol oxidations, despite the vulnerability of disulfides toward overoxidation, overoxidized byproducts or oxidation of nontarget functional groups was not detected across all 28 tested substrates. This investigation presents the first application of a lanthanide-oxo/hydroxy cluster in photocatalysis.
氧化是化学工业中主要碳排放的次要驱动因素。为解决这一问题,光催化有氧氧化已成为一种有前景的替代方法。然而,实现令人满意的化学选择性和有效利用太阳光的挑战阻碍了该领域的进展。在此背景下,本研究通过独特的无辅助配体氧化水解法引入了一种新型均相光催化剂[SmO(OH)(HO)]I(HO)簇(Sm-OC)。以Sm-OC为催化剂,开发了一种用于合成有价值二硫化物的太阳能光催化硫醇有氧氧化反应。值得注意的是,该催化剂在测试条件下表现出显著的周转数≥2000。Sm-OC催化的有氧氧化表现出显著的化学选择性。在硫醇氧化反应中,尽管二硫化物容易过度氧化,但在所有28种测试底物中均未检测到过度氧化的副产物或非目标官能团的氧化。本研究首次展示了镧系氧/羟基簇在光催化中的应用。