Defect-surface engineering of La-doped ceria for microwave-assisted hydrogen production

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Domínguez Saldaña, Aitor
Navarrete, Laura
Carrillo, Alfonso J.
Balaguer, María
Santos, Joaquín

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SDG

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Hydrogen plays a pivotal role in decarbonizing the energy and chemical sectors, yet current production methods are limited by high temperatures and energy demands. Microwave-assisted thermochemical redox cycles offer a promising low-temperature, contactless alternative by coupling electromagnetic energy with reducible oxides. This study explores La-doped ceria (Ce1−xLaxO2−δ) as a tunable platform to enhance microwave-driven hydrogen production.

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Domínguez-Saldaña, A., Navarrete, L., Carrillo, A. J., Balaguer, M., Santos, J., García-Baños, B., Plaza-González, P., Catalán-Martínez, D., Catalá-Civera, J. M., & Serra, J. M. (2026). Defect-surface engineering of La-doped ceria for microwave-assisted hydrogen production. Journal of Materials Chemistry A, 14(24), 15097-15107. https://doi.org/10.1039/D5TA07647A

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Attribution-NonCommercial 4.0 International

La licencia de este ítem se describe como Attribution-NonCommercial 4.0 International