Faculty profile
Mohamed Mohamedi
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Research
Latest papers
Biohybrid nanostructured ceria/glucose oxidase electrodes enabling enzyme glucose oxidation with pseudocapacitive charge buffering.
RSC advances · 2026 · first author
Integration of Carbon Nanotubes into Manganese Dioxide Nanorods for Enhanced Enzymeless Electrochemical Glucose Sensing with High Sensitivity and Selectivity.
Biosensors · 2025 · senior author
Microfibrous Carbon Paper Decorated with High-Density Manganese Dioxide Nanorods: An Electrochemical Nonenzymatic Platform of Glucose Sensing.
Sensors (Basel, Switzerland) · 2024 · senior author
Latest funding
- $183,721
Development of advanced all-solid-state zinc air battery
NSERC · 2022 · Principal investigator
- $118,894
Advanced Surface Characterization Equipment for Porous Materials: An Immediate Need
NSERC · 2020 · Co-investigator
- $144,000
Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
NSERC · 2019 · Principal investigator
10 publications.
Biohybrid nanostructured ceria/glucose oxidase electrodes enabling enzyme glucose oxidation with pseudocapacitive charge buffering.
Mohamedi M, Moumene M
Integration of Carbon Nanotubes into Manganese Dioxide Nanorods for Enhanced Enzymeless Electrochemical Glucose Sensing with High Sensitivity and Selectivity.
Ahmed KH, Zuria AM, Mohamedi M
Microfibrous Carbon Paper Decorated with High-Density Manganese Dioxide Nanorods: An Electrochemical Nonenzymatic Platform of Glucose Sensing.
Ahmed KH, Mohamedi M
Enhanced Supercapacitor and Cycle-Life Performance: Self-Supported Nanohybrid Electrodes of Hydrothermally Grown MnO2 Nanorods on Carbon Nanotubes in Neutral Electrolyte.
Bouachma S, Zheng X, Moreno Zuria A, Kechouane M, Gabouze N, Mohamedi M
Porous carbonaceous materials simultaneously dispersing N, Fe and Co as bifunctional catalysts for the ORR and OER: electrochemical performance in a prototype of a Zn-air battery.
Jaramillo D, Alvarez G, Díaz C, Pérez S, Muñoz Saldaña J, Sierra L, López BL, Moreno-Zuria A, Mohamedi M, Palacio R
Hybrid Carbon Sphere Chain-MnO2 Nanorods as Bifunctional Oxygen Electrocatalysts for Rechargeable Zinc-Air Batteries.
Zheng X, Zuria AM, Mohamedi M
Three-Dimensional Pinecone-like Binder-Free Pt-TiO2 Nanorods on Ti Mesh Structures: Synthesis, Characterization and Electroactivity towards Ethanol Oxidation.
Mohammadi N, Abrego-Martinez JC, Mohamedi M
Advanced Zinc-Air Batteries with Free-Standing Hierarchical Nanostructures of the Air Cathode for Portable Applications.
Zheng X, Mohammadi N, Moreno Zuria A, Mohamedi M
Synthesis of free-standing ternary Rh-Pt-SnO2-carbon nanotube nanostructures as a highly active and robust catalyst for ethanol oxidation.
Wang H, Sun S, Mohamedi M
Interrelated functionalities of hierarchically CNT/CeO2/Pt nanostructured layers: synthesis, characterization, and electroactivity.
Tabet-Aoul A, Mohamedi M
Development of advanced all-solid-state zinc air battery
Principal investigators: Mohamedi, Mohamed MM
Keywords: Design and device fabrication; Electrochemistry; Hybrid nanostructured catalysts; Metal-Air batteries; Nanomaterials; Numerical simulation; Self-supported catalysts; Solid electrolyte; Solid-state rechargeable batteries; Zinc-air batteries
Advanced Surface Characterization Equipment for Porous Materials: An Immediate Need
Principal investigators: Sun, Shuhui
Stoichiometry, hierarchical arrangement and kinetics of electrode reactions at novel multi-components electrocatalytic materials
Principal investigators: Mohamedi, Mohamed
Keywords: electrocatalysis; nanomaterials and nanostructures; alcohol electrooxidation; oxygen reduction; pulsed laser deposition; solid-liquid interface; direct alcohol fuel cells; selective cathodes; multicomponents catalyst; renewable energy
In situ Spectroelectrochemistry System With Polarization-Modulated Infrared Reflection Absorption Spectroscopy
Principal investigators: Siaj, Mohamed
Innovative concepts, materials and structures for direct electrochemistry
Principal investigators: Mohamedi, Mohamed
Development and tailoring nanoelectrodes for micropower fuel cells
Principal investigators: Mohamedi, Mohamed
Development and tailoring nanoelectrodes for micropower fuel cells
Principal investigators: Mohamedi, Mohamed
Development of novel nanosized electrocatalysts for direct bioethanol fuel cells
Principal investigators: Mohamedi, Mohamed
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
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