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Dr. Mabrook Saleh Ali Saleh Amer

Assistant Professor

Assistant Professor of Physical Chemistry-Electrochemistry

Engineering
Building 3, 1st Floor, 1C22

Low-symmetry mesoporous titanium dioxide electrode

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 annealing. An electrode made of a conductive substrate coated with the lsm-TiO2 detects electrochemical oxidation of hydroxide ion solution by an oxidation peak for hydroxide ions at a lower potential than other metal electrodes. The oxidation process is irreversible under diffusion-control, the peak current linearly increases with hydroxide concentration within the concentration range from 1.0 to 50 mM, the detection limit may be 0.05 mM and the current sensitivity may be 0.181 mA/mM. The peak current is linearly dependent on alkaline solution pH and the dissociation constant of the hydroxide ion precursor. The electrode can be used in hydroxide sensing performed in nitrate, fluoride, chloride or sulfate supporting electrolyte, which makes the electrode a superior sensor for voltammetric hydroxide determination.


 

Publisher Name
US20200333283A1, United States
more of publication
publications

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…

by Mohamed Ali Ghanem, Abdullah Mohamed Al-Mayouf, Mabrook Saleh Ali Saleh
2020
Published in:
US20200333283A1, United States
publications

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…

by Prabhakarn Arunachalam, Mabrook S AMER, Maged N SHADDAD, Abdullah M. AL-MAYOUF
2026
Published in:
US20250347012A1, United States
publications

Electrooxidation of polyethylene terephthalate (PET)-derived ethylene glycol (EG) provides a promising strategy to couple plastic waste valorization with energy-efficient hydrogen production…

by Ahmad A. Alsaleh; Khulud A Abuhaimed; Mabrook S. Amer; Mohammed Alotaibi; Huilong Dong; Prabhakarn Arunachalam; Naif S. Almuqati; Abdullah Mohammed Al-Mayouf
2026
Published in:
Royal Society of Chemistry-Sustainable Energy & Fuels