Nitrogen Fixation by an Arc Plasma at Elevated Pressure to Increase the Energy Efficiency and Production Rate of NOx I Tsonev, C O’Modhrain, A Bogaerts, Y Gorbanev ACS Sustainable Chemistry & Engineering 11 (5), 1888-1897, 2023 | 28 | 2023 |
Effusion nozzle for energy-efficient NOx production in a rotating gliding arc plasma reactor S Van Alphen, HA Eshtehardi, C O'Modhrain, J Bogaerts, H Van Poyer, ... Chemical engineering journal 443, 136529, 2022 | 25 | 2022 |
RuO2/TiO2 photocatalysts prepared via a hydrothermal route: Influence of the presence of TiO2 on the reactivity of RuO2 in the artificial photosynthesis reaction E Morais, C O'Modhrain, KR Thampi, JA Sullivan Journal of Catalysis 401, 288-296, 2021 | 23 | 2021 |
Ti-doped SBA-15 catalysts used in phenol oxidation reactions G Almohammadi, C O’Modhrain, S Kelly, JA Sullivan ACS omega 5 (1), 791-798, 2019 | 9 | 2019 |
Visible Light‐Driven Gas‐Phase Artificial Photosynthesis Reactions over Ruthenium Metal Nanoparticles Modified with Anatase TiO2 E Morais, C O’Modhrain, KR Thampi, JA Sullivan International Journal of Photoenergy 2019 (1), 3651603, 2019 | 7 | 2019 |
Enhanced Stability and Emission Properties of Perylene Dyes by Surface Tethering: Preparation of Fluorescent Ru Nanoparticle Suspensions by Alkyne Linker Chemistry E Morais, C Moloney, C O'Modhrain, E McKiernan, DF Brougham, ... Chemistry–A European Journal 27 (3), 1023-1030, 2021 | 1 | 2021 |
Upscaling Plasma-Based CO2 Conversion: Case Study of a Multi-Reactor Gliding Arc Plasmatron C O’Modhrain, G Trenchev, Y Gorbanev, A Bogaerts ACS Engineering Au, 2024 | | 2024 |
Visible Light-Driven Gas-Phase Artificial Photosynthesis Reactions over Ruthenium Metal E Morais, C O’Modhrain, R Thampi, JA Sullivan Morais, Eduardo, Colin O’Modhrain, Ravindranathan Thampi, and James A …, 2019 | | 2019 |
Research Article Visible Light-Driven Gas-Phase Artificial Photosynthesis Reactions over Ruthenium Metal Nanoparticles Modified with Anatase TiO E Morais, C O’Modhrain, R Thampi, JA Sullivan | | 2019 |
Nitrogen fixation by an arc plasma at elevated pressure to increase the energy efficiency and production rate of NOx: Mechanistic insights from an equilibrium model C O’Modhrain, I Tsonev, A Bogaerts, Y Gorbanev | | |