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مواقع أعضاء هيئة التدريس

كل ما تحتاجه من أستاذك… في مكان واحد

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Dr.Saba Ameen Abduraheem Aladeemy

Assistant Professor College of Science and Humanity Studies in Alkharj
  • Kharj
  • 011-588-8888
  • s.aladeemy@psau.edu.sa
  • Curriculum Vitae
  • Publications

Publications

  • . Aladeemy, S. A., Shaddad, M. N., Aldawsari, A. M., Alansi, A. M., Alharthi, A. I., Alotaibi, M. A., Al-Mayouf, A. M & Qahtan, T. F. (2026). Engineered core–shell Fe-Ni@ Ni (OH)2/NF via one-pot co-deposition for high-performance urea oxidation and oxygen evolution reactions. Fuel, 426, 139500. https://doi.org/10.1016/j.fuel.2026.139500
  • 2. Aladeemy, S. A., Ghanem, M. A., Amer, M. S., Arunachalam, P., & Al-Mayouf, A. M. (2026). Enhanced Electrocatalytic Glycerol Oxidation Coupled with Hydrogen Production over mesoporous Cu/Cu₂O@NF Nanostructures Catalysts Synthesized via Liquid Crystal Template. Surfaces and Interfaces, 109539. https;//doi.org/10.1016/j.surfin.2026.109539
  • 3. Aladeemy, S. A., Fadhillah, F., Kriaa, K., Alromaeh, A. I., Farid, O., Ibrahim, A. A., & Rabia, M. (2026). A promising Poly (2-mercaptoaniline)/Copper-Based porous nanocomposite for advanced supercapacitor electrode design. Polymer Bulletin, 83(5), 242.
  • https://doi.org/10.1007/s00289-025-06267-4
  • 4. Aladeemy, S. A., AlRijraji, T. R., Amer, M. S., Arunachalam, P., & Al-Mayouf, A. M. (2025). Electrooxidation of ethylene glycol coupled with hydrogen production on porous NiO/Ni@ NF nanosheet electrocatalysts. Catalysis Science & Technology, 15(8), 2571-2583. https://doi.org/10.1039/D4CY01450B
  • 5. Aladeemy, S. A., Shaddad, M. N., Qahtan, T. F., Alharthi, A. I., Shalabi, K., Al-Mayouf, A. M., & Arunachalam, P. (2025). Co-Doped Ni@Ni(OH)2 Core–Shell Catalysts for Dual-Function Water and Urea Oxidation. Catalysts, 15(5), 474. https://doi.org/10.3390/catal15050474
  • 6. Aladeemy, S. A., Arunachalam, P., Al-Mayouf, A. M., Sudha, P. N., Rekha, A., Vidhya, A., ... & Hameed, S. T. (2024). Engineered CoS/Ni3S2 Heterointerface Catalysts Grown Directly on Carbon Paper as an Efficient Electrocatalyst for Urea Oxidation. Catalysts, 14(9), 570. https://doi.org/10.3390/catal14090570
  • 7. Abahussain, A. A., Aladeemy, S. A., Odhah, O. H., Almutairi, G., Banabdwin, K. M., Ibrahim, A. A., ... & Al-Fatesh, A. S. (2025). Synthesis and evaluation of promoted Ni catalysts for enhanced hydrogen production in dry reforming of methane: A response surface methodology study. Molecular Catalysis, 585, 115327. https://doi.org/10.1016/j.mcat.2025.115327
  • 8. Alshammari, D. A., Aladeemy, S. A., Ali, R. M., Marouani, M. E., El-Naggar, N. A., Alharbi, F. S., ... & Al-Fatesh, A. S. (2026). A comparative study of SiO2, Al2O3, and mixed SiO2-Al2O3-supported nickel catalysts for dry reforming of methane: effects of calcination temperature on catalytic performance. Journal of Materials Science, 61(2), 834-853. https://doi.org/10.1007/s10853-025-11935-x
  • 9. Ghanem, M. A., Aladeemy, S. A., & Al-Mayouf, A. M. (2024). Supercapacitance performance of mesoporous mono-and bi-metallic cobalt and nickel hydroxides nanoflakes chemically deposited from foam-surfactant liquid crystal dual templates. Journal of The Electrochemical Society, 171(1), 010522. https://doi.org/ 10.1149/1945-7111/ad1e50
  • 10. Al-Sulmi, W. A., Ghanem, M. A., Aladeemy, S. A., Al-Mayouf, A. M., & Alotaibi, N. H. (2023). Chemical deposition from a liquid crystal template: A highly active mesoporous nickel phosphate electrocatalyst for hydrogen green production via urea electro-oxidation in an alkaline solution. Arabian Journal of Chemistry, 16(11), 105266.‏ https://doi.org/10.1016/j.arabjc.2023.105266
  • 11. Shaddad, M. N., Alharthi, A. I., Aladeemy, S. A., & Arunachalam, P. (2024). Engineering oxygen vacancy on nickel-doped iron oxide nanorods as efficient bifunctional electrocatalysts for oxygen evolution and urea oxidation reaction. Journal of the Taiwan Institute of Chemical Engineers, 105928. https://doi.org/10.1016/j.jtice.2024.105928
  • 12. Shaddad, M. N., Alharthi, A. I., Alotaibi, M. A., Hezam, M., Aladeemy, S. A., Aljohani, Y. S., ... & Shalabi, K. (2026). N-doped NiFeOx/N-CNT catalysts with surface oxygen vacancies for efficient oxygen evolution and water treatment. Fuel, 408, 137741. https://doi.org/10.1016/j.fuel.2025.137741
  • 13. Rabia, M., Fadhillah, F., Abdel-Khalek, A. A., Assadi, A. A., Alromaeh, A. I., & Aladeemy, S. A. (2026). Single-step fabrication of poly (O-chlorobenzenamine)/silver halide nanosphere composite for pseudocapacitive energy storage. Journal of Thermoplastic Composite Materials, 39(5), 2550-2565. https://doi.org/10.1177/08927057251391656
  • 14. Alwadai, N., Aladeemy, S. A., Alreshaidan, S. B., Algarni, T. S., Abahussain, A. A., Ali, F. A. A., ... & Al‐Fatesh, A. S. (2026). Strontium‐Promoted Ni/SiO2‐ZrO2 Catalysts for Syngas and Hydrogen Generation via Partial Oxidation of Methane: Structural and Catalytic Insights. Journal of the Chinese Chemical Society. https://doi.org/10.1002/jccs.70202
  • 15. Shaddad, M. N., Alanazi, A. A., Aldawsari, A. M., Alotaibi, M. A., Aladeemy, S. A., Abdulaziz, F., & Aljohani, Y. S. (2025). Multifunctional nitrogen doped carbon nanotube-encapsulated defect-rich cobalt-iron oxide catalyst for efficient water electrolysis and dye removal from water. Journal of Industrial and Engineering Chemistry. https://doi.org/10.1016/j.jiec.2025.04.050
  • 16. Youssef, H. M., Shaddad, M. N., Aladeemy, S. A., & Aldawsari, A. M. (2025). Fabrication of CoP@ P, N-CNTs-Deposited Nickel Foam for Energy-Efficient Hydrogen Generation via Electrocatalytic Urea Oxidation. Catalysts, 15(7), 652. https://doi.org/10.3390/catal15070652
  • 17. Aldawsari, A. M., Shaddad, M. N., & Aladeemy, S. A. (2025). Development of Ni-PNC/Nickel Foam for Efficient Hydrogen Production via Urea Electro-Oxidation. Catalysts, 15(7), 662. https://doi.org/10.3390/catal15070662
  • 18. Saeed, A., Asnag, G. M., Alghamdi, A. M., Alghamdi, S. A., Alwafi, R., Alanazi, F. K., Aladeemy, S.A. & Alaizeri, Z. M. (2024). Structural, optical, and electrical characteristics of HPMC/PVA-I2O5 composites: fabrication and performance analysis for energy storage applications. Journal of Energy Storage, 96, 112765. https://doi.org/10.1016/j.est.2024.112765
  • 19. Shaddad, M. N., Arunachalam, P., Hezam, M. S., Aladeemy, S. A., Aljaafreh, M. J., Abu Alrub, S., & Al-Mayouf, A. M. (2024). Enhanced electrocatalytic oxygen reduction reaction of TiO2 nanotubes by combining surface oxygen vacancy engineering and Zr doping. Nanomaterials, 14(4), 366. https://doi.org/10.3390/nano14040366
  • 20. ben Gubaer, S. O., Shaddad, M. N., Arunachalam, P., Amer, M. S., Aladeemy, S. A., & Al-Mayouf, A. M. (2023). Enhanced electrocatalytic oxygen redox reactions of iron oxide nanorod films by combining oxygen vacancy formation and cobalt doping. RSC advances, 13(47), 33242-33254. https://doi.org/10.1039/D3RA03394E
  • 21.Bamuqaddam, A. M., Aladeemy, S. A., Ghanem, M. A., Al-Mayouf, A. M., Alotaibi, N. H., & Marken, F. (2022). Foam synthesis of Nickel/Nickel (II) hydroxide nanoflakes using double templates of surfactant liquid crystal and hydrogen bubbles: a high-performance catalyst for methanol electrooxidation in alkaline solution. Nanomaterials, 12(5), 879. https://doi.org/10.3390/nano12050879
  • 22. Amer, M. S., Arunachalam, P., Alsalman, A. M., Al-Mayouf, A. M., Almutairi, Z. A., Aladeemy, S. A., & Hezam, M. (2022). Facile synthesis of amorphous nickel iron borate grown on carbon paper as stable electrode materials for promoted electrocatalytic urea oxidation. Catalysis Today, 397, 197-205. https://doi.org/10.1016/j.cattod.2021.09.036
  • 1Electrooxidation of Urea in Alkaline Solution Using Nickel Hydroxide Activated Carbon Paper Electrodeposited from DMSO Solution, (I.F 4.146), 1-17, 2021 (online).
  • Saba A. Aladeemy 1,2, Abdullah M. Al-Mayouf 1,2, *, Maged N. Shaddad 1, Mabrook S. Amer 2, Nawier K. Almutairi 1, Mohamed A. Ghanem 1, Nouf H. Alotaibi 1 and Prabhakarn Arunachalam 1, *
  • . 2Structure and electrochemical activity of nickel aluminum fluoride nanosheets during urea electro-oxidation in an alkaline solution, (I.F 3.36), 3190-3201, 2021 (online).
  • Saba A. Aladeemy, ab Abdullah M. Al-Mayouf, ab Mabrook S. Amer, a Nouf H. Alotaibi, a Mark T. Weller c and Mohamed A. Ghanem *a
  • . 3Method of Preparation a nanocomposite film including starch nanofibers, US Patent, Application 9,480,749 B1 Nov. 2016 (online).
  • MAG Awad, SA Al-Adeemy, T Aouak, AA Hendi
  • 4Foam synthesis of nickel/nickel (II) hydroxide nanoflakes using double templates of surfactant liquid crystal and hydrogen bubbles: a high-performance catalyst for methanol electrooxidation in alkaline solution, (IF: 5.52), 2022 (online).
  • Amani M. Bamuqaddam1, Saba A. Aladeemy1,2, Mohamed A. Ghanem1*, Abdullah M. Al-Mayouf 1, Nouf H. Alotaibi1, Frank Marken3
  • Facile Synthesis of Amorphous Nickel Iron Borate Grown on Carbon Paper as Stable Electrode Materials for Promoted Electrocatalytic Urea Oxidation, (IF: 6.766), 1-25, 2021 (online).
  • Mabrook S. Amer, ab Prabhakarn Arunachalam a, *Abdulaziz M. Alsalman a, Abdullah M. Al-Mayouf, ab Zeyad Almutairi, bcd Saba A. Aladeemy, ab Mahmmoud Hezam e
  • .

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