乙苯
苯乙酮
催化作用
化学
均分解
基本反应
碳纳米管
反应速率常数
活化能
动能
反应机理
钴
化学工程
光化学
物理化学
无机化学
有机化学
动力学
纳米技术
材料科学
激进的
工程类
物理
量子力学
作者
Yongzhao Su,Jiangnan Huang,Guangxing Yang,Hongjuan Wang,Hao Yu,Qiao Zhang,Yonghai Cao,Feng Peng
摘要
Abstract Ethylbenzene (EB) oxidation to oxygenated products catalyzed by carbon nanotubes (CNTs) and CNTs with confined cobalt nanoparticles (Co@C/CNTs) are conducted. Co@C/CNTs with enhanced interfacial charge transfer displays a unique activity. A kinetic model with the simplified network is established, in which seven elementary reactions with prominent features of EB oxidation are selected. The main parameters, reaction rate constant ( k ) and active energy ( E a ) are obtained. Co@C/CNTs could speed up most elementary steps and reduce energy barriers, thus improving the overall activity. The homolytic cleavage of peroxide is confirmed to be the rate‐determining step (RDS). The k ratio (1.55) of acetophenone (AcPO)/1‐phenylethyl alcohol (PEA) is found to be close to the experimental result ( r AcPO / r PEA , 1.30). The prediction of EB oxidation is simulated, showing that the synthesis of AcPO dominates the reaction route, while the addition of PEA would prohibit the reaction.
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