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Monolithically Integrated Spinel MxCo3−xO4 (M=Co,Ni, Zn) Nanoarray Catalysts: Scalable Synthesis and Cation Manipulation for Tunable Low‐Temperature CH4 and CO Oxidation
Authors:Zheng Ren  Venkatesh Botu  Sibo Wang  Yongtao Meng  Wenqiao Song  Yanbing Guo  Ramamurthy Ramprasad  Steven L. Suib  Pu‐Xian Gao
Abstract:A series of large scale MxCo3−xO4 (M=Co, Ni, Zn) nanoarray catalysts have been cost‐effectively integrated onto large commercial cordierite monolithic substrates to greatly enhance the catalyst utilization efficiency. The monolithically integrated spinel nanoarrays exhibit tunable catalytic performance (as revealed by spectroscopy characterization and parallel first‐principles calculations) toward low‐temperature CO and CH4 oxidation by selective cation occupancy and concentration, which lead to controlled adsorption–desorption behavior and surface defect population. This provides a feasible approach for scalable fabrication and rational manipulation of metal oxide nanoarray catalysts applicable at low temperatures for various catalytic reactions.
Keywords:Dichtefunktionalrechnungen  Heterogene Katalyse  Maß  stabsvergrö  ß  erung  Nanostrukturen  Niedertemperaturoxidationen
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