催化作用
硝基苯
脱氢
化学
纳米颗粒
材料科学
贵金属
化学工程
无机化学
纳米技术
有机化学
工程类
作者
Chen Wu,Changyan Zhu,Kangkai Liu,Shaowei Yang,Yu Sun,Kai Zhu,Yueling Cao,Sai Zhang,Sifei Zhuo,Min Zhang,Qiuyu Zhang,Hepeng Zhang
标识
DOI:10.1016/j.apcatb.2021.120288
摘要
The catalytic hydrogen transfer (CHT) cascade reaction between alcohols and nitro- compounds meets green chemistry yet involves high catalyst requirements. Herein, a hierarchical nano-pyramid structure, in which cobalt single atoms (Co SAs) are deposited on highly dispersed ZnO nanoparticles supported by nitrogen-doped carbon (denoted as Co-ZnO/NC), was designed and obtained through pyrolysis of ZnCo-ZIF. The catalyst exhibited excellent catalytic performance toward the CHT cascade reaction, achieving a high nitrobenzene conversion (94 %), imine selectivity (97 %), and turnover frequency (8.8 h−1). This nano-pyramid is a state-of-the-art non-noble-metal catalyst and is comparable to noble-metal catalysts. Experimental and DFT results revealed that the Co SAs supported on ZnO reduced the reaction energy barrier of hydroxyl dehydrogenation, the first and rate-determining step in this heterogeneous catalysis. Furthermore, Co-ZnO/NC exhibits good recyclability and universality. Our findings offer a new catalyst for Schiff base synthesis and aid understanding of the roles of Zn in ZIF-derived carbon catalysts.
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