Thuriot-Roukos, J.; Ferraz, C.P.; K. Al Rawas, H.; Heyte, S.; Paul, S.; Itabaiana Jr, I.; Pietrowski, M.; Zieliński, M.; Ghazzal, M.N.; Dumeignil, F.;
et al. Supported Gold Catalysts for Base-Free Furfural Oxidation: The State of the Art and Machine-Learning-Enabled Optimization. Materials 2023, 16, 6357.
https://doi.org/10.3390/ma16196357
AMA Style
Thuriot-Roukos J, Ferraz CP, K. Al Rawas H, Heyte S, Paul S, Itabaiana Jr I, Pietrowski M, Zieliński M, Ghazzal MN, Dumeignil F,
et al. Supported Gold Catalysts for Base-Free Furfural Oxidation: The State of the Art and Machine-Learning-Enabled Optimization. Materials. 2023; 16(19):6357.
https://doi.org/10.3390/ma16196357
Chicago/Turabian Style
Thuriot-Roukos, Joëlle, Camila Palombo Ferraz, Hisham K. Al Rawas, Svetlana Heyte, Sébastien Paul, Ivaldo Itabaiana Jr, Mariusz Pietrowski, Michal Zieliński, Mohammed N. Ghazzal, Franck Dumeignil,
and et al. 2023. "Supported Gold Catalysts for Base-Free Furfural Oxidation: The State of the Art and Machine-Learning-Enabled Optimization" Materials 16, no. 19: 6357.
https://doi.org/10.3390/ma16196357
APA Style
Thuriot-Roukos, J., Ferraz, C. P., K. Al Rawas, H., Heyte, S., Paul, S., Itabaiana Jr, I., Pietrowski, M., Zieliński, M., Ghazzal, M. N., Dumeignil, F., & Wojcieszak, R.
(2023). Supported Gold Catalysts for Base-Free Furfural Oxidation: The State of the Art and Machine-Learning-Enabled Optimization. Materials, 16(19), 6357.
https://doi.org/10.3390/ma16196357