|  | Author | Title | Year  | Publication | Volume | Times cited | Additional Links | Links | 
	|  | Li, J.; Xu, J.; Rebrov, E.; Wanten, B.; Bogaerts, A. | Machine learning-based prediction and optimization of plasma-based conversion of CO2and CH4in an atmospheric pressure glow discharge plasma | 2025 | Green Chemistry | 27 |  |  |       | 
	|  | 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 |  | UA library record; WoS full record; WoS citing articles |       | 
	|  | Albrechts, M.; Tsonev, I.; Bogaerts, A. | Can post-plasma CH4injection improve plasma-based dry reforming of methane? A modeling study | 2024 | Green Chemistry | 26 |  |  |       | 
	|  | Fang, W.; Wang, X.; Li, S.; Hao, Y.; Yang, Y.; Zhao, W.; Liu, R.; Li, D.; Li, C.; Gao, X.; Wang, L.; Guo, H.; Yi, Y. | Plasma-catalytic one-step steam reforming of CH₄ to CH₃OH and H₂ promoted by oligomerized [Cu-O-Cu] species on zeolites | 2024 | Green chemistry : cutting-edge research for a greener sustainable future | 26 |  | UA library record; WoS full record |   | 
	|  | Biondo, O.; van Deursen, C.F.A.M.; Hughes, A.; van de Steeg, A.; Bongers, W.; van de Sanden, M.C.M.; van Rooij, G.; Bogaerts, A. | Avoiding solid carbon deposition in plasma-based dry reforming of methane | 2023 | Green Chemistry | 25 |  | UA library record; WoS full record |       | 
	|  | Pattyn, C.; Maira, N.; Buddhadasa, M.; Vervloessem, E.; Iseni, S.; Roy, N.C.; Remy, A.; Delplancke, M.-P.; De Geyter, N.; Reniers, F. | Disproportionation of nitrogen induced by DC plasma-driven electrolysis in a nitrogen atmosphere | 2022 | Green Chemistry | 24 |  | UA library record; WoS full record; WoS citing articles |     | 
	|  | Vervloessem, E.; Gorbanev, Y.; Nikiforov, A.; De Geyter, N.; Bogaerts, A. | Sustainable NOxproduction from air in pulsed plasma: elucidating the chemistry behind the low energy consumption | 2022 | Green Chemistry | 24 |  | UA library record; WoS full record; WoS citing articles |       | 
	|  | Windels, S.; Diefenhardt, T.; Jain, N.; Marquez, C.; Bals, S.; Schlummer, M.; De Vos, D.E. | Catalytic upcycling of PVC waste-derived phthalate esters into safe, hydrogenated plasticizers | 2022 | Green chemistry : cutting-edge research for a greener sustainable future | 24 | 8 | UA library record; WoS full record; WoS citing articles |     | 
	|  | Weiβ, R.; Gritsch, S.; Brader, G.; Nikolic, B.; Spiller, M.; Santolin, J.; Weber, H.K.; Schwaiger, N.; Pluchon, S.; Dietel, K.; Guebitz, G.; Nyanhongo, G. | A biobased, bioactive, low CO₂ impact coating for soil improvers | 2021 | Green Chemistry | 23 |  | UA library record; WoS full record; WoS citing articles |     | 
	|  | Van Schoubroeck, S.; Thomassen, G.; Van Passel, S.; Malina, R.; Springael, J.; Lizin, S.; Venditti, R.A.; Yao, Y.; Van Dael, M. | An integrated techno-sustainability assessment (TSA) framework for emerging technologies | 2021 | Green Chemistry | 23 |  | UA library record; WoS full record; WoS citing articles |       | 
	|  | Jardali, F.; Van Alphen, S.; Creel, J.; Ahmadi Eshtehardi, H.; Axelsson, M.; Ingels, R.; Snyders, R.; Bogaerts, A. | NOxproduction in a rotating gliding arc plasma: potential avenue for sustainable nitrogen fixation | 2021 | Green Chemistry | 23 |  | UA library record; WoS full record; WoS citing articles |       | 
	|  | Rouwenhorst, K.H.R.; Engelmann, Y.; van ‘t Veer, K.; Postma, R.S.; Bogaerts, A.; Lefferts, L. | Plasma-driven catalysis: green ammonia synthesis with intermittent electricity | 2020 | Green Chemistry | 22 | 4 | UA library record; WoS full record; WoS citing articles |       | 
	|  | Slaets, J.; Aghaei, M.; Ceulemans, S.; Van Alphen, S.; Bogaerts, A. | CO2and CH4conversion in “real” gas mixtures in a gliding arc plasmatron: how do N2and O2affect the performance? | 2020 | Green Chemistry | 22 |  | UA library record; WoS full record; WoS citing articles |       | 
	|  | Thomassen, G.; Van Dael, M.; You, F.; Van Passel, S. | A multi-objective optimization-extended techno-economic assessment : exploring the optimal microalgal-based value chain | 2019 | Green Chemistry | 21 | 1 | UA library record; WoS full record; WoS citing articles |   | 
	|  | Thomassen, G.; Van Dael, M.; Van Passel, S.; You, F. | How to assess the potential of emerging green technologies? Towards a prospective environmental and techno-economic assessment framework | 2019 | Green Chemistry | 21 | 5 | UA library record; WoS full record; WoS citing articles |     | 
	|  | De Schouwer, F.; Claes, L.; Claes, N.; Bals, S.; Degrève, J.; De Vos, D.E. | Pd-catalyzed decarboxylation of glutamic acid and pyroglutamic acid to bio-based 2-pyrrolidone | 2015 | Green chemistry : cutting-edge research for a greener sustainable future | 17 | 47 | UA library record; WoS full record; WoS citing articles |       | 
	|  | Jochems, P.; Satyawali, Y.; Diels, L.; Dejonghe, W. | Enzyme immobilization on/in polymeric membranes : status, challenges and perspectives in biocatalytic membrane reactors (BMRs) | 2011 | Green chemistry : cutting-edge research for a greener sustainable future | 13 |  | UA library record; WoS full record; WoS citing articles |   |