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  1. Facile preparation of triangular-like polycrystalline ceria as supporting carrier in catalysis exemplified by Ni/CeO2 catalyzed oxidation and hydrogenation reactions
  2. Comparative Assessment of First-Row 3d Transition Metals (Ti-Zn) Supported on CeO2 Nanorods for CO2 Hydrogenation
  3. Ceria morphology role on methane dry reforming over Ni/CeO2 with transient and isotopic techniques
  4. Ultra-high supercapacitor NiSRu@NiO on nickel foam electrodes
  5. NiS heterostructures on nickel foam electrodes for hydrogen evolution reaction
  6. NiO nanoparticles on nickel foam for hydrogen evolution reaction
  7. Ni/CeO2 on ceramic NZP structured catalysts for scaled-up CO2 methanation
  8. Engineering Strategies of CeO2-Based Catalysts for CO2 Hydrogenation Processes
  9. CO2 hydrogenation performance of Ni-based catalysts
  10. Remarkably active Ni/CeO2 nanorods for CO2 methanation
  11. Water‒Gas Shift Performance of CuOx/CeO2 Catalysts
  12. CeO2-Based Transition Metal Catalysts: Facet-Dependent Reactivity
  13. CO2 hydrogenation performance of Cs-doped CuO/CeO2 catalysts
  14. Hydrothermal Synthesis of ZnO–doped Ceria Nanorods
  15. Effect of Preparation Method on Physicochemical Properties and CO Oxidation of CeO2/TiO2 Oxides
  16. Remarkable efficiency of Ni supported on CeO2 nanorods for low-temperature CO2 hydrogenation to CH4
  17. Recent Advances on Rational Design of CuOx/CeO2 Binary System
  18. CO2 Hydrogenation over Nanoceria-Supported Transition Metal Catalysts
  19. Cu2O-CuO@biochar composite: Synthesis, characterization and its efficient photocatalytic performance
  20. Ceria morphological effects on the CO oxidation performance of the Fe2O3/CeO2 binary system.
  21. Ceria morphology effect on solid state properties and deN2O performance of Co3O4/CeO2 binary system.
  22. Cu/CeO2: Support shape effects on surface chemistry and CO oxidation activity.
  23. Optimized deN2O activity of CuO-CeO2 though synthesis route and alkali (Cs) promotion.
  24. Synthesis route effect on ceria nanoparticles' solid state properties and CO oxidation activity.