Jiangsu Province Engineering Research Center of Special Functional Textile Materials, Changzhou Vocational Institute of Textile and Garment, Changzhou, 213164, China.
Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis and Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou University, Changzhou, 213164, China.
Dalton Trans. 2023 May 2;52(17):5399-5417. doi: 10.1039/d3dt00649b.
Single-atom catalysts (SACs), affording 100% metal dispersion and maximized metal atom utilization, have recently emerged as a new type of potential catalyst for catalytic reactions, particularly for benzene oxidation to phenol. Their great advantages have stimulated researchers' intensive endeavors toward the development of highly efficient SACs, and various metal SACs are well fabricated for facilitating the catalytic benzene oxidation reaction. Aiming to gain a better understanding of the research progress in SACs for boosting benzene oxidation into phenol in recent years, we herein present a comprehensive review with a particular focus on the roles of metal atoms and supports when used for the catalytic oxidation reactions. Additionally, the applications of many advanced SACs in benzene oxidation reactions and their structure-activity correlation are presented, which include noble-metal SACs and non-noble-metal SACs. Finally, challenges remaining in this research area are discussed and possible future research directions are proposed.
单原子催化剂 (SACs) 提供了 100%的金属分散度和最大化的金属原子利用率,最近作为一种新型的潜在催化剂出现在催化反应中,特别是在苯氧化为苯酚的反应中。它们的巨大优势激发了研究人员对高效 SACs 的深入研究,并且已经制备了各种金属 SACs 以促进催化苯氧化反应。为了更好地了解近年来 SACs 在促进苯氧化为苯酚方面的研究进展,我们在此进行了全面的综述,特别关注金属原子和载体在催化氧化反应中的作用。此外,还介绍了许多先进的 SACs 在苯氧化反应中的应用及其结构-活性关系,包括贵金属 SACs 和非贵金属 SACs。最后,讨论了该研究领域中存在的挑战,并提出了可能的未来研究方向。