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◆ Advanced Functional Materials2025-10-04· Catalysis

Cobalt Single‐Atom Catalyst Boosted by Cobalt Nanoparticles for Efficient Photothermocatalytic Benzyl Alcohols Oxidative Coupling with Amines to Imines

Xiaoli Luo, Zhen Liu, Liang Wang, Zhipeng Li, Zhen Wei, Yingzhuang Xu, Junxiao Liu, Weiqin Wei, Yunxiang Li, Shuxin Ouyang, Hong Yuan, Tierui Zhang

原始摘要(英文原文)· Original abstract
Abstract Single‐atom catalysts have been demonstrated promising potential in diverse catalytic reactions; however, their practical application remains hindered by significant limitations in both activity and stability. Therefore, addressing how to effectively enhance their performance remains a critical challenge in the field of single‐atom catalysis. Herein, a Co single‐atom catalyst synergized with Co nanoparticles on a carbon support for oxidative coupling of benzyl alcohol and aniline into N‐benzylideneaniline in an O 2 atmosphere is developed. The catalyst exhibits 95% conversion and 95% selectivity, a remarkable reaction rate enhancement (4 fold increase compared to an individual Co single‐atom catalyst), remarkable stability, and excellent substrate versatility. Furthermore, systematic investigations reveal that Co nanoparticles not only facilitate electron transfer between Co single‐atom sites and O 2 but also serve as an enrichment site for aniline molecules, thereby preventing strong adsorption of aniline onto Co single‐atom sites. These findings provide new insights into the rational design of high‐performance single‐atom catalysts for multi‐step organic transformation through combining with bifunctional nanoparticles.
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Cobalt Single‐Atom Catalyst Boosted by Cobalt Nanoparticles for Efficient Photothermocatalytic Benzyl Alcohols Oxidative Coupling with Amines to Imines — 科研速览 Science Skim