The Kinetic Model of Diffusion and Reactions in Powder Catalysts during Temperature Programmed Oxygen Isotopic Exchange Process
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[1] D. Duprez,et al. Surface diffusion upon oxygen isotopic exchange on oxide-supported metal nanoclusters , 2004 .
[2] D. Duprez,et al. Oxygen Mobility in CeO2 and CexZr(1-x)O2 Compounds: Study by CO Transient Oxidation and 18O/16O Isotopic Exchange , 1999 .
[3] D. Weng,et al. Role of Surface Area in Oxygen Storage Capacity of Ceria–Zirconia as Soot Combustion Catalyst , 2007 .
[4] V. A. Eremin,et al. Interaction of O2 with LSM–YSZ Composite Materials and Oxygen Spillover Effect , 2021 .
[5] V. Nehasil,et al. Oxygen Exchange between Catalyst and Active Support during CO Oxidation on Rh/CeO2(111) and Rh/CeO2(110): Isotope Labeled 18O Study , 2021, The Journal of Physical Chemistry C.
[6] Rajbala,et al. Crystallite-Scale Approach To Predict the Oxygen Storage Capacity of a Three-Way Catalyst for Natural Gas Applications , 2019, Industrial & Engineering Chemistry Research.
[7] D. Duprez. Study of surface reaction mechanisms by 16O/18O and H/D isotopic exchange , 2006 .
[8] J. Nováková,et al. Exchange reactions of oxygen between oxygen molecules and solid oxides , 1963 .
[9] V. A. Eremin,et al. Oxygen isotope exchange in doped lanthanum zirconates , 2018, Journal of Solid State Chemistry.
[10] H. Shinjoh,et al. Investigation of the effective oxygen storage and release performances on the Pt/CeO2-ZrO2 catalysts by breakthrough method , 2019, Catalysis Today.
[11] Jingguang G. Chen,et al. Elucidating the roles of metallic Ni and oxygen vacancies in CO2 hydrogenation over Ni/CeO2 using isotope exchange and in situ measurements , 2019, Applied Catalysis B: Environmental.
[12] B. Boukamp,et al. A novel pulse isotopic exchange technique for rapid determination of the oxygen surface exchange rate of oxide ion conductors. , 2009, Physical chemistry chemical physics : PCCP.
[13] N. Bion,et al. Embedded Ni nanoparticles in CeZrO2 as stable catalyst for dry reforming of methane , 2020 .
[14] V. Sadykov,et al. Oxygen mobility and surface reactivity of PrNi1 − xCoxO3 − δperovskites and their nanocomposites with Ce0.9Y0.1O2 − δ by temperature-programmed isotope exchange experiments , 2015 .
[15] M. Sgroi,et al. First of Its Kind Automotive Catalyst Prepared by Recycled PGMs-Catalytic Performance , 2021, Catalysts.
[16] Y. Pagán-Torres,et al. In-Situ Oxygen Isotopic Exchange Vibrational Spectroscopy of Rhenium Oxide Surface Structures on Cerium Oxide , 2020 .
[17] D. Duprez,et al. Modeling of Diffusion Process in the Isotopic Oxygen Exchange Experiments of CexZr(1-x)O2 Catalysts , 2013 .
[18] Neal W. Currier,et al. An experimental and kinetic modeling study of aging impact on surface and subsurface oxygen storage in three-way catalysts , 2017, Catalysis Today.
[19] V. Ponec,et al. The isotopic exchange reaction of oxygen on metal oxides , 1999 .
[20] D. Duprez,et al. Isotopic Oxygen Exchange over Pd/Al2O3 Catalyst: Study on C18O2 and 18O2 Exchange , 2010 .
[21] Tsunehiro Tanaka,et al. Deactivation Mechanism of Pd/CeO2–ZrO2 Three-Way Catalysts Analyzed by Chassis-Dynamometer Tests and in Situ Diffuse Reflectance Spectroscopy , 2019, ACS Catalysis.
[22] C. Mirodatos,et al. Kinetics of oxygen exchange over CeO2-ZrO2 fluorite-based catalysts. , 2007, The journal of physical chemistry. A.
[23] A. Boréave,et al. Isotopic Oxygen Exchange Study to Unravel Noble Metal Oxide/Support Interactions: The Case of RuO2 and IrO2 Nanoparticles Supported on CeO2, TiO2 and YSZ , 2020, ChemCatChem.
[24] D. Duprez,et al. Infrared Study of Oxygen Adsorption and Activation on Cerium–Zirconium Mixed Oxides , 2000 .
[25] S. Eslava,et al. Recent advances in gasoline three-way catalyst formulation: A review , 2019, Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering.
[26] J. Nováková. ISOTOPIC EXCHANGE OF OXYGEN 18O BETWEEN THE GASEOUS PHASE AND OXIDE CATALYSTS , 1971 .