Zeolitic Imidazolate Framework-67-Derived CeO 2 @Co 3 O 4 Core–Shell Microspheres with Enhanced Catalytic Activity toward Toluene Oxidation
作者:Wei Fang, Jinghuan Chen, Jinghuan Chen, Xiangyuan Zhou, Jianjun Chen, Jianjun Chen, Zhiping Ye, Junhua Li · 发表于:Industrial & Engineering Chemistry Research · 年份:2020 · DOI:10.1021/acs.iecr.9b07028 · 被引用次数:44 · 研究领域:Catalytic Processes in Materials Science、Gas Sensing Nanomaterials and Sensors、Advanced Photocatalysis Techniques
In this work, a core–shell structured CeO 2 @Co 3 O 4 catalyst was successfully prepared by using a zeolitic imidazolate framework-based material as a sacrificial template. The structure, morphology, and physicochemical characteristics of these materials were investigated by X-ray diffraction, N 2 sorption, Fourier transform infrared spectroscopy, Raman spectroscopy, field emission scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy, temperature-programmed desorption, and temperature-programmed reduction studies. Compared with pure Co 3 O 4 and CeO 2, the CeO 2 @Co 3 O 4 sample displayed superior catalytic performance ( T 90 = 225 °C) toward toluene oxidation. Results demonstrated that the CeO 2 @Co 3 O 4 sample exhibited a core–shell structure, with hierarchically wrinkled surfaces. This unique structure, especially the interface between the core and the shell, endowed the CeO 2 @Co 3 O 4 catalyst with better activity. In addition, there was a synergistic effect between cerium and cobalt oxides in the core–shell bimetallic sample, which was responsible for the improved performance of the material. Moreover, surface-active oxygen species involved and played a significant role in toluene oxidation.