About
Dr. Theophile Niyitanga received his B.Sc. in Applied Physics, Option of Material Science, in 2013 from the Kigali Institute of Science and Technology (University of Rwanda, College of Science and Technology), Rwanda. He received his M.Sc. in Applied Physics in 2017 from Daegu University, South Korea. He received his Ph.D. in Applied Physics in 2020 from Daegu University, South Korea. From 2020 to 2021, he was a post-doctoral researcher in the department of material science and engineering at Yeungnam University, South Korea, and currently, he is an assistant professor at the School of Materials Science and Engineering at Yeungnam University, South Korea. His research interests mainly focus on the synthesis and characterization of advanced 2D materials, including graphene and its derivatives, for electrochemical energy storage and conversion applications.
Employment
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Yeungnam University assistant/Research professor2020 - Present
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Daegu University Researcher2017 - 2020
Education
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Daegu University Ph.D2017 - 2020
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- Facile synthesis of strongly coupled platinum-molybdenum/silicon carbide quantum-dots heterostructures as electrocatalyst for hydrogen evolution reaction Save
- One-step solution-induced impregnation synthesis of strongly coupled platinum–molybdenum/silicon carbide quantum dots heterostructures encapsulated on reduced graphene oxide sheet as electrocatalyst for hydrogen evolution reaction Save
- Graphene based magnetite carbon nanofiber composites as anodes for high-performance Li-ion batteries Save
- Bimetallic-based CuxCo3−xO4 nanoparticle-embedded N-doped reduced graphene oxide toward efficient oxygen evolution reaction and hydrogen evolution reaction for bifunctional catalysis Save
- FeO-Co3O4 Hybrid Composite on Oxidized Graphite: Single-Stage Hydrothermal Synthesis and Application as an Electrocatalyst for Oxygen Evolution Reaction Save
- Time-Dependent Oxidation of Graphite and Cobalt Oxide Nanoparticles as Electrocatalysts for the Oxygen Evolution Reaction Save
- Functionalized Carbon Nanotubes Supported 3D Zinc/Cobalt Oxide as an Efficient Electrocatalyst for Oxygen Evolution Reaction Save
- Hematite-nickel oxide/carbon nanotube composite catalyst for oxygen evolution reaction Save
- Modification of thermally reduced graphite oxide and molybdenum disulfide by solution plasma for hydrogen evolution reaction Save
- Activated-Carbon-Supported Molybdenum Disulfide for the Enhanced Hydrogen Evolution Reaction Save