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Author |
Title |
Year  |
Publication |
Volume |
Times cited |
Additional Links |
Links |
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Quiroz Marnef, R.; Maerivoet, S.; Tsonev, I.; Reniers, F.; Bogaerts, A. |
Spatially resolved modelling of NH3 cracking in warm plasma |
2025 |
Chemical Engineering Journal |
508 |
|
|
|
|
Van Poyer, H.M.S.; Tsonev, I.; Maerivoet, S.J.R.; Albrechts, M.C.K.; Bogaerts, A. |
Influence of radial transport and turbulent effects on CO2 conversion in a microwave plasma reactor: Insights from a multi-dimensional thermo-chemical flow model |
2025 |
Chemical Engineering Journal |
507 |
|
|
|
|
Biondo, O.; Wang, K.; Zhang, H.; Bogaerts, A. |
Coupling a CO2 plasma with a carbon bed: The closer the better |
2025 |
Chemical Engineering Journal |
507 |
|
|
|
|
Li, J.; Xu, J.; Rebrov, E.; Bogaerts, A. |
Machine learning-based prediction and optimization of plasma-catalytic dry reforming of methane in a dielectric barrier discharge reactor |
2025 |
Chemical Engineering Journal |
507 |
|
|
|
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Van Steenweghen, F.; Verschueren, A.; Fedirchyk, I.; Martens, J.A.; Bogaerts, A.; Hollevoet, L. |
Reversed Plasma Catalysis Process Design for Efficient Ammonia Decomposition |
2025 |
ACS Sustainable Chemistry & Engineering |
13 |
|
|
|
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O’Modhrain, C.; Gorbanev, Y.; Bogaerts, A. |
Post-plasma carbon bed design for CO2 conversion: Does size and insulation matter? |
2025 |
Journal of Energy Chemistry |
104 |
|
|
|
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Vertongen, R.; Tsonev, I.; Bogaerts, A. |
Enhancing CO2 conversion with gas quenching in arc plasma |
2025 |
Chemical Engineering Journal |
|
|
|
|
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Coeck, R.; Claes, N.; Cuypers, T.; Bals, S.; De Vos, D.E. |
The sustainable and catalytic synthesis ofN,N-alkylated fatty amines from fatty acids and esters |
2025 |
Green Chemistry |
27 |
|
|
|
|
Kavak, S.; Jannis, D.; De Backer, A.; Esteban, D.A.; Annys, A.; Carrasco, S.; Ferrando-Ferrero, J.; Guerrero, R.M.; Horcajada, P.; Verbeeck, J.; Van Aert, S.; Bals, S. |
High-resolution electron microscopy imaging of MOFs at optimized electron dose |
2025 |
Journal of Materials Chemistry A |
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Van Alphen, S.; Wanten, B.; Girard-Sahun, F.; Slaets, J.; Creel, J.; Aghaei, M.; Bogaerts, A. |
The Role of CH4in Plasma-Assisted CO2and CH4Conversion in a Rotating Gliding Arc Plasma: Insights Revealed by Experiments and Modeling |
2024 |
ACS Sustainable Chemistry & Engineering |
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Zani, V.; Renero-Lecuna, C.; Jimenez de Aberasturi, D.; di Silvio, D.; Kavak, S.; Bals, S.; Signorini, R.; Liz-Marzán, L.M. |
Core–Shell Colloidal Nanocomposites for Local Temperature Monitoring during Photothermal Heating |
2024 |
The Journal of Physical Chemistry C |
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|
UA library record |
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Fedirchyk, I.; Tsonev, I.; Quiroz Marnef, R.; Bogaerts, A. |
Plasma-assisted NH3 cracking in warm plasma reactors for green H2 production |
2024 |
Chemical Engineering Journal |
499 |
|
|
|
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Sun, J.; Chen, Q.; Qin, W.; Wu, H.; Liu, B.; Li, S.; Bogaerts, A. |
Plasma-catalytic dry reforming of CH4: Effects of plasma-generated species on the surface chemistry |
2024 |
Chemical Engineering Journal |
498 |
|
|
|
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Albrechts, M.; Tsonev, I.; Bogaerts, A. |
Can post-plasma CH4injection improve plasma-based dry reforming of methane? A modeling study |
2024 |
Green Chemistry |
26 |
|
|
|
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Lv, H.; Meng, S.; Cui, Z.; Li, S.; Li, D.; Gao, X.; Guo, H.; Bogaerts, A.; Yi, Y. |
Plasma-catalytic direct oxidation of methane to methanol over Cu-MOR: Revealing the zeolite-confined Cu2+ active sites |
2024 |
Chemical Engineering Journal |
496 |
|
|
|
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Maerivoet, S.; Wanten, B.; De Meyer, R.; Van Hove, M.; Van Alphen, S.; Bogaerts, A. |
Effect of O2on Plasma-Based Dry Reforming of Methane: Revealing the Optimal Gas Composition via Experiments and Modeling of an Atmospheric Pressure Glow Discharge |
2024 |
ACS Sustainable Chemistry and Engineering |
12 |
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UA library record; WoS full record |
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Chowdhury, M.S.; Esteban, D.A.; Amin, R.; Román-Freijeiro, C.; Rösch, E.L.; Etzkorn, M.; Schilling, M.; Ludwig, F.; Bals, S.; Salgueiriño, V.; Lak, A. |
Organic Molecular Glues to Design Three-Dimensional Cubic Nano-assemblies of Magnetic Nanoparticles |
2024 |
Chemistry of materials |
36 |
|
UA library record; WoS full record |
|
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Vertongen, R.; De Felice, G.; van den Bogaard, H.; Gallucci, F.; Bogaerts, A.; Li, S. |
Sorption-Enhanced Dry Reforming of Methane in a DBD Plasma Reactor for Single-Stage Carbon Capture and Utilization |
2024 |
ACS Sustainable Chemistry & Engineering |
12 |
|
|
|
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Quintelier, M.; Hajizadeh, A.; Zintler, A.; Gonçalves, B.F.; Fernández de Luis, R.; Esrafili Dizaji, L.; Vande Velde, C.M.L.; Wuttke, S.; Hadermann, J. |
In SituStudy of the Activation Process of MOF-74 Using Three-Dimensional Electron Diffraction |
2024 |
Chemistry of materials |
|
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UA library record; WoS full record |
|
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Michiels, R.; Gerrits, N.; Neyts, E.; Bogaerts, A. |
Plasma Catalysis Modeling: How Ideal Is Atomic Hydrogen for Eley–Rideal? |
2024 |
The Journal of Physical Chemistry C |
128 |
|
|
|
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Pedrazo-Tardajos, A.; Claes, N.; Wang, D.; Sánchez-Iglesias, A.; Nandi, P.; Jenkinson, K.; De Meyer, R.; Liz-Marzán, L.M.; Bals, S. |
Direct visualization of ligands on gold nanoparticles in a liquid environment |
2024 |
Nature chemistry |
|
|
UA library record; WoS full record; WoS citing articles; WoS full record |
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Cai, Y.; Michiels, R.; De Luca, F.; Neyts, E.; Tu, X.; Bogaerts, A.; Gerrits, N. |
Improving Molecule–Metal Surface Reaction Networks Using the Meta-Generalized Gradient Approximation: CO2Hydrogenation |
2024 |
The Journal of Physical Chemistry C |
128 |
|
|
|
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Van Gordon, K.; Ni, B.; Girod, R.; Mychinko, M.; Bevilacqua, F.; Bals, S.; Liz‐Marzán, L.M. |
Single Crystal and Pentatwinned Gold Nanorods Result in Chiral Nanocrystals with Reverse Handedness |
2024 |
Angewandte Chemie: international edition in English |
|
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UA library record; WoS full record; WoS citing articles; WoS full record |
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Maerivoet, S.; Tsonev, I.; Slaets, J.; Reniers, F.; Bogaerts, A. |
Coupled multi-dimensional modelling of warm plasmas: Application and validation for an atmospheric pressure glow discharge in CO2/CH4/O2 |
2024 |
Chemical Engineering Journal |
492 |
|
|
|
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Cai, Y.; Mei, D.; Chen, Y.; Bogaerts, A.; Tu, X. |
Machine learning-driven optimization of plasma-catalytic dry reforming of methane |
2024 |
Journal of Energy Chemistry |
96 |
|
|
|
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Xu, W.; Van Alphen, S.; Galvita, V.V.; Meynen, V.; Bogaerts, A. |
Effect of Gas Composition on Temperature and CO2Conversion in a Gliding Arc Plasmatron reactor: Insights for Post‐Plasma Catalysis from Experiments and Computation |
2024 |
ChemSusChem |
|
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UA library record; WoS full record; WoS citing articles |
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De Meyer, R.; Gorbanev, Y.; Ciocarlan, R.-G.; Cool, P.; Bals, S.; Bogaerts, A. |
Importance of plasma discharge characteristics in plasma catalysis: Dry reforming of methane vs. ammonia synthesis |
2024 |
Chemical engineering journal |
488 |
|
UA library record; WoS full record; WoS citing articles; WoS full record |
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Gorbanev, Y.; Fedirchyk, I.; Bogaerts, A. |
Plasma catalysis in ammonia production and decomposition: Use it, or lose it? |
2024 |
Current Opinion in Green and Sustainable Chemistry |
47 |
|
|
|
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Gerrits, N.; Jackson, B.; Bogaerts, A. |
Accurate Reaction Probabilities for Translational Energies on Both Sides of the Barrier of Dissociative Chemisorption on Metal Surfaces |
2024 |
The Journal of Physical Chemistry Letters |
15 |
|
UA library record; WoS full record |
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Vandemeulebroucke, D.; Batuk, M.; Hajizadeh, A.; Wastiaux, M.; Roussel, P.; Hadermann, J. |
Incommensurate Modulations and Perovskite Growth in LaxSr2–xMnO4−δAffecting Solid Oxide Fuel Cell Conductivity |
2024 |
Chemistry of materials |
|
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UA library record; WoS full record; WoS full record |
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