Prof. Dr. Abdulaziz Bagabas | Chemical Engineering | Research Excellence Award

King Abdulaziz City for Science and Technology | Saudi Arabia

Abdulaziz Ahmed Bagabas has made influential contributions across inorganic and organic syntheses, homogeneous and heterogeneous catalysis, environmental chemistry, materials science, nanotechnology, and corrosion, establishing a strong interdisciplinary presence in these fields. His research integrates advanced catalytic systems, functional nanomaterials, quantum dots, metal–organic frameworks, and engineered nanostructures to address challenges related to sustainability, energy efficiency, and environmental remediation. Through extensive international collaborations and specialized research training, he has advanced expertise in nanoparticle fabrication, supramolecular chemistry, mesoporous materials, and nanostructured assemblies that bridge fundamental science with applied technological solutions. His achievements also include recognition through competitive research awards and patented innovations that reflect the novelty and practical relevance of his work. Demonstrating strong scholarly impact, Abdulaziz Ahmed Bagabas has authored 70 documents, accrued 1,652 citations, and achieved an h-index of 23, underscoring the sustained influence and visibility of his contributions within the global scientific community. His body of work highlights a cohesive blend of innovation, multidisciplinary depth, and commitment to advancing chemical and nanotechnological research with broad applications.

Profiles : Scopus | Orcid 

Featured Publications

Bamatraf, N. A., Alreshaidan, S. B., Ibrahim, A. A., Fakeeha, A. H., Abasaeed, A. E., Abahussain, A. A. M., Alotibi, M. F., Bagabas, A. A., & Al-Fatesh, A. S. (2023). Different supported Ni catalysts for dry reforming of methane: Effect of calcination temperature. Journal of King Saud University – Science, 35, 102958.

Alreshaidan, S. B., Al-Fatesh, A., Lanre, M. S., Alanazi, Y. M., Ibrahim, A. A., Fakeeha, A. H., Albaqi, F., Anojaidi, K., & Bagabas, A. (2023). Effect of adding gadolinium oxide promoter on nickel catalyst over yttrium–zirconium oxide support for dry reforming of methane. Materials, 16(3), 1158.

Saleh, J., Al-Fatesh, A. S., Ibrahim, A. A., Frusteri, F., Abasaeed, A. E., Fakeeha, A. H., Albaqi, F., Anojaidi, K., Alreshaidan, S. B., Albinali, I., & Bagabas, A. (2023). Stability and activity of rhodium-promoted nickel-based catalysts in dry reforming of methane. Nanomaterials, 13(3), 547.

Al-Rabiah, A. A., Boz, I., Akhmedov, V. M., Mostafa, M. M. M., & Bagabas, A. (2022). Highly selective gas-phase catalytic hydrogenation of acetone to isopropyl alcohol. Catalysts, 12(10), 1251.

Abdulaziz Bagabas | Chemical Engineering | Research Excellence Award

You May Also Like