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Author |
Title |
Year |
Publication |
Volume |
Times cited |
Additional Links |
Links |
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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 |
|
|
|
|
Živanić, M.; Espona‐Noguera, A.; Lin, A.; Canal, C. |
Current State of Cold Atmospheric Plasma and Cancer‐Immunity Cycle: Therapeutic Relevance and Overcoming Clinical Limitations Using Hydrogels |
2023 |
Advanced Science |
|
|
UA library record; WoS full record; WoS citing articles |
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Wang, J.; Zhang, K.; Bogaerts, A.; Meynen, V. |
3D porous catalysts for plasma-catalytic dry reforming of methane : how does the pore size affect the plasma-catalytic performance? |
2023 |
Chemical engineering journal |
464 |
|
UA library record; WoS full record; WoS citing articles |
|
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Andersen, Ja.; Holm, Mc.; van 't Veer, K.; Christensen, Jm.; Østberg, M.; Bogaerts, A.; Jensen, Ad. |
Plasma-catalytic ammonia synthesis in a dielectric barrier discharge reactor: A combined experimental study and kinetic modeling |
2023 |
Chemical engineering journal |
457 |
|
UA library record; WoS full record; WoS citing articles |
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Morais, E.; Delikonstantis, E.; Scapinello, M.; Smith, G.; Stefanidis, G.D.; Bogaerts, A. |
Methane coupling in nanosecond pulsed plasmas: Correlation between temperature and pressure and effects on product selectivity |
2023 |
Chemical engineering journal |
462 |
|
UA library record; WoS full record; WoS citing articles |
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Van Alphen, S.; Hecimovic, A.; Kiefer, C.K.; Fantz, U.; Snyders, R.; Bogaerts, A. |
Modelling post-plasma quenching nozzles for improving the performance of CO2 microwave plasmas |
2023 |
Chemical engineering journal |
462 |
|
UA library record; WoS full record; WoS citing articles |
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Liu, R.; Hao, Y.; Wang, T.; Wang, L.; Bogaerts, A.; Guo, H.; Yi, Y. |
Hybrid plasma-thermal system for methane conversion to ethylene and hydrogen |
2023 |
Chemical engineering journal |
463 |
|
UA library record; WoS full record; WoS citing articles |
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Van Alphen, S.; Hecimovic, A.; Kiefer, C.K.; Fantz, U.; Snyders, R.; Bogaerts, A. |
Modelling post-plasma quenching nozzles for improving the performance of CO2 microwave plasmas |
2023 |
Chemical engineering journal |
462 |
|
UA library record; WoS full record; WoS citing articles |
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Wang, J.; Zhang, K.; Meynen, V.; Bogaerts, A. |
Dry reforming in a dielectric barrier discharge reactor with non-uniform discharge gap : effects of metal rings on the discharge behavior and performance |
2023 |
Chemical engineering journal |
|
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UA library record; WoS full record; WoS citing articles |
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Zhou, R.; Zhou, R.; Xian, Y.; Fang, Z.; Lu, X.; Bazaka, K.; Bogaerts, A.; Ostrikov, K.(K.) |
Plasma-enabled catalyst-free conversion of ethanol to hydrogen gas and carbon dots near room temperature |
2020 |
Chemical Engineering Journal |
382 |
20 |
UA library record; WoS full record; WoS citing articles |
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Andersen, Ja.; Christensen, Jm.; Østberg, M.; Bogaerts, A.; Jensen, Ad. |
Plasma-catalytic dry reforming of methane: Screening of catalytic materials in a coaxial packed-bed DBD reactor |
2020 |
Chemical Engineering Journal |
397 |
|
UA library record; WoS full record; WoS citing articles |
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Girard-Sahun, F.; Biondo, O.; Trenchev, G.; van Rooij, G.; Bogaerts, A. |
Carbon bed post-plasma to enhance the CO2 conversion and remove O2 from the product stream |
2022 |
Chemical Engineering Journal |
442 |
|
UA library record; WoS full record; WoS citing articles |
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Girard-Sahun, F.; Biondo, O.; Trenchev, G.; van Rooij, G.; Bogaerts, A. |
Carbon bed post-plasma to enhance the CO2 conversion and remove O2 from the product stream |
2022 |
Chemical Engineering Journal |
442 |
|
UA library record; WoS full record; WoS citing articles |
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Van Alphen, S.; Ahmadi Eshtehardi, H.; O'Modhrain, C.; Bogaerts, J.; Van Poyer, H.; Creel, J.; Delplancke, M.-P.; Snyders, R.; Bogaerts, A. |
Effusion nozzle for energy-efficient NOx production in a rotating gliding arc plasma reactor |
2022 |
Chemical Engineering Journal |
443 |
|
UA library record; WoS full record; WoS citing articles |
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Wang, Y.; Chen, Y.; Harding, J.; He, H.; Bogaerts, A.; Tu, X. |
Catalyst-free single-step plasma reforming of CH4 and CO2 to higher value oxygenates under ambient conditions |
2022 |
Chemical Engineering Journal |
450 |
|
UA library record; WoS full record; WoS citing articles |
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Xu, X.; Vereecke, G.; Chen, C.; Pourtois, G.; Armini, S.; Verellen, N.; Tsai, W.K.; Kim, D.W.; Lee, E.; Lin, C.Y.; Van Dorpe, P.; Struyf, H.; Holsteyns, F.; Moshchalkov, V.; Indekeu, J.; De Gendt, S.; |
Capturing wetting states in nanopatterned silicon |
2014 |
ACS nano |
8 |
39 |
UA library record; WoS full record; WoS citing articles |
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Neyts, E.C.; Shibuta, Y.; van Duin, A.C.T.; Bogaerts, A. |
Catalyzed growth of carbon nanotube with definable chirality by hybrid molecular dynamics-force biased Monte Carlo simulations |
2010 |
ACS nano |
4 |
129 |
UA library record; WoS full record; WoS citing articles |
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Neyts, E.C.; van Duin, A.C.T.; Bogaerts, A. |
Insights in the plasma-assisted growth of carbon nanotubes through atomic scale simulations : effect of electric field |
2012 |
Journal of the American Chemical Society |
134 |
56 |
UA library record; WoS full record; WoS citing articles |
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Neyts, E.C.; van Duin, A.C.T.; Bogaerts, A. |
Changing chirality during single-walled carbon nanotube growth : a reactive molecular dynamics/Monte Carlo study |
2011 |
Journal of the American Chemical Society |
133 |
116 |
UA library record; WoS full record; WoS citing articles |
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Vanraes, P.; Bogaerts, A. |
Plasma physics of liquids—A focused review |
2018 |
Applied physics reviews |
5 |
33 |
UA library record; WoS full record; WoS citing articles |
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Vanraes, P.; Parayil Venugopalan, S.; Bogaerts, A. |
Multiscale modeling of plasma–surface interaction—General picture and a case study of Si and SiO2etching by fluorocarbon-based plasmas |
2021 |
Applied Physics Reviews |
8 |
|
UA library record; WoS full record; WoS citing articles |
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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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Loenders, B.; Michiels, R.; Bogaerts, A. |
Is a catalyst always beneficial in plasma catalysis? Insights from the many physical and chemical interactions |
2023 |
Journal of Energy Chemistry |
85 |
|
UA library record |
|
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Wanten, B.; Vertongen, R.; De Meyer, R.; Bogaerts, A. |
Plasma-based CO2 conversion: How to correctly analyze the performance? |
2023 |
Journal of Energy Chemistry |
86 |
|
UA library record; WoS full record; WoS citing articles |
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Salden, A.; Budde, M.; Garcia-Soto, C.A.; Biondo, O.; Barauna, J.; Faedda, M.; Musig, B.; Fromentin, C.; Nguyen-Quang, M.; Philpott, H.; Hasrack, G.; Aceto, D.; Cai, Y.; Jury, F.A.; Bogaerts, A.; Da Costa, P.; Engeln, R.; Galvez, M.E.; Gans, T.; Garcia, T.; Guerra, V.; Henriques, C.; Motak, M.; Navarro, M.V.; Parvulescu, V.I.; Van Rooij, G.; Samojeden, B.; Sobota, A.; Tosi, P.; Tu, X.; Guaitella, O. |
Meta-analysis of CO₂ conversion, energy efficiency, and other performance data of plasma-catalysis reactors with the open access PIONEER database |
2023 |
Journal of energy chemistry |
86 |
|
UA library record; WoS full record; WoS citing articles |
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Mehta, P.; Barboun, P.M.; Engelmann, Y.; Go, D.B.; Bogaerts, A.; Schneider, W.F.; Hicks, J.C. |
Plasma-Catalytic Ammonia Synthesis beyond the Equilibrium Limit |
2020 |
Acs Catalysis |
10 |
|
UA library record; WoS full record; WoS citing articles |
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Nematollahi, P.; Barbiellini, B.; Bansil, A.; Lamoen, D.; Qingying, J.; Mukerjee, S.; Neyts, E.C. |
Identification of a Robust and Durable FeN4CxCatalyst for ORR in PEM Fuel Cells and the Role of the Fifth Ligand |
2022 |
ACS catalysis |
|
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UA library record; WoS full record; WoS full record; WoS citing articles |
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Cui, Z.; Meng, S.; Yi, Y.; Jafarzadeh, A.; Li, S.; Neyts, E.C.; Hao, Y.; Li, L.; Zhang, X.; Wang, X.; Bogaerts, A. |
Plasma-catalytic methanol synthesis from CO₂ hydrogenation over a supported Cu cluster catalyst : insights into the reaction mechanism |
2022 |
Acs Catalysis |
12 |
|
UA library record; WoS full record; WoS citing articles |
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Villarreal, R.; Lin, P.-C.; Faraji, F.; Hassani, N.; Bana, H.; Zarkua, Z.; Nair, M.N.; Tsai, H.-C.; Auge, M.; Junge, F.; Hofsaess, H.C.; De Gendt, S.; De Feyter, S.; Brems, S.; Ahlgren, E.H.; Neyts, E.C.; Covaci, L.; Peeters, F.M.; Neek-Amal, M.; Pereira, L.M.C. |
Breakdown of universal scaling for nanometer-sized bubbles in graphene |
2021 |
Nano Letters |
21 |
24 |
UA library record; WoS full record; WoS citing articles |
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Chernozem, R., V; Romanyuk, K.N.; Grubova, I.; Chernozem, P., V.; Surmeneva, M.A.; Mukhortova, Y.R.; Wilhelm, M.; Ludwig, T.; Mathur, S.; Kholkin, A.L.; Neyts, E.; Parakhonskiy, B.; Skirtach, A.G.; Surmenev, R.A. |
Enhanced piezoresponse and surface electric potential of hybrid biodegradable polyhydroxybutyrate scaffolds functionalized with reduced graphene oxide for tissue engineering |
2021 |
Nano Energy |
89 |
|
UA library record; WoS full record; WoS citing articles |
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