2022
DOI: 10.1007/s10854-021-07652-1
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Length effect of ceria nanorod on its oxygen vacancy formation and photocatalytic property

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Cited by 5 publications
(1 citation statement)
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“…In this regard, ceria nanoparticles of well-defined morphology (i.e., rods, polyhedra, cubes) were successfully synthesized through the hydrothermal method by our research group, with the rod-shaped catalysts exhibiting high reducibility and oxygen kinetics [99,104,132,148,150,152]. Moreover, the length of ceria nanorods was found to increase with the increasing temperature of hydrothermal treatment, also affecting the concentration of oxygen vacancies [159]. In addition, a dependency was found between the exposed facets and the metal-support interaction during various reactions over CeO 2 -based transition metals, such as CO 2 methanation [160][161][162] and dry reforming of methane [163,164].…”
Section: Shape Effectsmentioning
confidence: 99%
“…In this regard, ceria nanoparticles of well-defined morphology (i.e., rods, polyhedra, cubes) were successfully synthesized through the hydrothermal method by our research group, with the rod-shaped catalysts exhibiting high reducibility and oxygen kinetics [99,104,132,148,150,152]. Moreover, the length of ceria nanorods was found to increase with the increasing temperature of hydrothermal treatment, also affecting the concentration of oxygen vacancies [159]. In addition, a dependency was found between the exposed facets and the metal-support interaction during various reactions over CeO 2 -based transition metals, such as CO 2 methanation [160][161][162] and dry reforming of methane [163,164].…”
Section: Shape Effectsmentioning
confidence: 99%