Dr. Mabrook S. Amer is an Assistant Professor at the Sustainable Energy Technologies Center, King Saud University, Saudi Arabia. He received his Ph.D. in Physical Chemistry from King Saud University in 2020. His research focuses on electrochemistry, renewable energy, hydrogen production, electrochemical CO₂ conversion, water splitting, plastic-waste upcycling, and mesoporous nanomaterials. He has participated as a Co-Investigator in several funded research projects and has extensive experience in developing electrocatalysts and supervising undergraduate and postgraduate students. Dr. Amer has authored and co-authored more than 60 peer-reviewed publications in leading international journals and contributed to a published three U.S. patent related to electrochemical energy production, conversion and applications.
مجالات الخبره
Interests:
Electrochemistry | Renewable Energy | Hydrogen Production and EnergyStorage | Mesoporous and Nanostructured Materials | Electrochemical CO2 Conversion | Electrochemical Water Splitting | Photoelectrochemical Water Splitting | Electrocatalytic Upcycling of Plastic Waste
The low-symmetry mesoporous titanium dioxide (lsm-TiO2) for use in an electrode for direct sensing of hydroxide ions may be prepared by evaporation-induced self-assembly followed by two stages of…
بواسطة
Mohamed Ali Ghanem, Abdullah Mohamed Al-Mayouf, Mabrook Saleh Ali Saleh
A titanium substrate includes TiO2 nanotubes (TNTs) uniformly distributed thereon, wherein the TiO2 nanotubes are doped with ZrO2 and Fe2O3. The presence of both ZrO2 and Fe2O3 on TNTs arrays…
بواسطة
Prabhakarn Arunachalam, Mabrook S AMER, Maged N SHADDAD, Abdullah M. AL-MAYOUF
Electrooxidation of polyethylene terephthalate (PET)-derived ethylene glycol (EG) provides a promising strategy to couple plastic waste valorization with energy-efficient hydrogen production…
بواسطة
Ahmad A. Alsaleh; Khulud A Abuhaimed; Mabrook S. Amer; Mohammed Alotaibi; Huilong Dong; Prabhakarn Arunachalam; Naif S. Almuqati; Abdullah Mohammed Al-Mayouf
2026
تم النشر فى:
Royal Society of Chemistry-Sustainable Energy & Fuels
Gas compression, gas liquefaction, storage by adsorption methods, conversion of hydrogen into chemical compounds (methanol and metal hydrides), and advanced hydrogen-storage materials (carbon…