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◆ Journal of CO2 Utilization2026-06-05· Materials science

Mo-CeO2 photocatalysts on MICROSCAFS®: Defect and support engineering for enhanced CO2 photoconversion

Rudolf Ricka, B. Barrocas, Miroslava Filip Edelmannová, Martin Reli, Marcin Lapinski, Ana C. Marques, Kamila Kočí

原始摘要(英文原文)· Original abstract
The development of efficient photocatalysts for CO 2 reduction is crucial for the development of carbon-neutral energy systems and sustainable production of fuels. In this study, Mo-modified CeO 2 nanoparticles were synthesized and immobilized on SiO 2 -TiO 2 porous microspheres (MICROSCAFS®) to improve charge separation, light harvesting, and surface reactivity. Structural and physico-chemical characterization confirmed the successful incorporation of Mo species into the CeO 2 lattice, leading to enhanced oxygen vacancy formation and improved redox properties. The photocatalysts were evaluated for CO 2 photoreduction, where Mo-CeO 2 demonstrated the highest CO and CH 4 production rates, which can be attributed to modifications in the defect and electronic structure of CeO 2 upon Mo doping, enhancing CO 2 adsorption and activation of CO 2 molecules. The Mo-CeO 2 @MICROSCAFS® composite further enhanced generation and selectivity towards H 2 owing to its macroporous architecture and higher surface hydroxyl density, which improved water activation. These findings highlight the synergistic interplay of Mo doping and MICROSCAFS® structuring, establishing Mo-CeO 2 -based materials as promising candidates for sustainable CO 2 photoconversion into value-added fuels.
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Mo-CeO2 photocatalysts on MICROSCAFS®: Defect and support engineering for enhanced CO2 photoconversion — 科研速览 Science Skim