Unraveling the structural and compositional peculiarities in CTAB-templated CeO2-ZrO2-MnOx catalysts for soot and CO oxidation

Structure-performance relationships in functional catalysts allow for controlling their performance in a wide range of reaction conditions. Here, the structural and compositional peculiarities in CTAB-templated CeO2-ZrO2-MnOx catalysts prepared by co-precipitation of precursors and their catalytic b...

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Published in:Nanomaterials Vol. 13, № 24. P. 3108 (1-19)
Other Authors: Grabchenko, Maria V., Mikheeva, Natalia N., Mamontov, Grigory V., Corberán, Vicente Cortés, Litvintseva, Kseniya A., Svetlichnyi, Valerii A., Vodyankina, Olga V., Salaev, Mikhail A.
Format: Article
Language:English
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Online Access:https://vital.lib.tsu.ru/vital/access/manager/Repository/koha:001158240
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Summary:Structure-performance relationships in functional catalysts allow for controlling their performance in a wide range of reaction conditions. Here, the structural and compositional peculiarities in CTAB-templated CeO2-ZrO2-MnOx catalysts prepared by co-precipitation of precursors and their catalytic behavior in CO oxidation and soot combustion are discussed. A complex of physical-chemical methods (low-temperature N2 sorption, XRD, TPR-H2, Raman, HR TEM, XPS) is used to elucidate the features of the formation of interphase boundaries, joint phases, and defects in multicomponent oxide systems. The addition of Mn and/or Zr dopant to ceria is shown to improve its performance in both reactions. Binary Ce-Mn catalysts demonstrate enhanced performance closely followed by the ternary oxide catalysts, which is due the formation of several types of active sites, namely, highly dispersed MnOx species, oxide-oxide interfaces, and oxygen vacancies that can act individually and/or synergistically.
Bibliography:Библиогр.: 72 назв.
ISSN:2079-4991