Synthesis of Porous Fe 3 C‐Based Composite Beads as Heterogeneous Oxidation Catalysts
Autor: | Kaifeng Lin, Yanqiu Jiang, Xianzhu Xu, Zhe Wang, Defeng Li, Yudong Li, Hang Huo, Tingting Zhao |
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Rok vydání: | 2019 |
Předmět: |
Thermogravimetric analysis
010405 organic chemistry Chemistry Cementite Organic Chemistry General Chemistry 010402 general chemistry Heterogeneous catalysis 01 natural sciences Catalysis Ferric oxalate 0104 chemical sciences chemistry.chemical_compound Amorphous carbon Catalytic oxidation Chemical engineering Pyrolysis |
Zdroj: | Chemistry – A European Journal. 25:4175-4183 |
ISSN: | 1521-3765 0947-6539 |
DOI: | 10.1002/chem.201805936 |
Popis: | A series of multiscale cementite/iron/porous carbon (CIPC-T) composites with extremely low nitrogen content and millimeter-size spherical morphology were prepared by simple carbothermal pyrolysis of resin spheres exchanged with ferric oxalate anions. CIPC-T materials are composed of highly disperse core-shell-structured Fe3 C/Fe@graphitic carbon (CI@GC) nanoparticles embedded in a porous amorphous carbon framework. A mechanism for the formation of the composites is proposed on the basis of the results of XRD, SEM, TEM, and thermogravimetric analysis. The Fe3 C content can be easily controlled just by using different carbothermal temperatures. The CIPC-T materials proved to be active as heterogeneous catalysts for oxidation of ethylbenzene to acetophenone and Fenton-like oxidation of methylene blue. For the first time, the role of Fe3 C in catalytic oxidation was confirmed. The spherical morphology of the composites and magnetic property facilitate separation of the catalyst from the reaction solution. More importantly, no leaching of iron active sites occurs during the reactions and the catalyst can be reused in continuous runs without obvious loss of activity. Such high stability of iron sites in the composites is ascribed to the protecting outer graphitic carbon shell of CI@GC. |
Databáze: | OpenAIRE |
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