催化作用
苯甲醇
煅烧
纳米颗粒
材料科学
4-硝基苯酚
铜
贵金属
化学工程
还原剂
酒精氧化
可重用性
纳米技术
化学
有机化学
计算机科学
冶金
工程类
软件
程序设计语言
作者
Jiakang Liu,Han Yang,Ufuoma I. Kara,E.D. Boerner,Yiqian Luo,Haitao Yu,Yang Xu,Xiaoguang Wang,Kun Huang
标识
DOI:10.1016/j.cej.2023.147778
摘要
Copper (Cu)-based nanoparticle catalysts have emerged as promising alternatives to noble metal catalysts due to their abundance and cost-effectiveness. However, challenges such as nanoparticle aggregation and oxidation hinder their reusability and overall performance. In this study, we present a highly efficient synthesis method for Cu-based core–shell catalysts through a combination of impregnation and in situ post-calcination. By incorporating hierarchically porous carbon structures in the core–shell configuration, we effectively mitigate agglomeration and complete oxidation of Cu nanoparticles. The resulting catalysts demonstrate outstanding catalytic performance and long-term stability in 4-nitrophenol reduction and benzyl alcohol oxidation reactions. Overall, our straightforward and rapid synthesis strategy offers a novel approach for fabricating Cu nanoparticle catalysts with exceptional activity and durability, paving the way for sustainable catalytic transformations.
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