Parties d'ouvrages collectifs (5)

  1. 1. Thiry, D., Reniers, F., & Snyders, R. (2019). A Joint Mechanistic Description of Plasma Polymers Synthesized at Low and Atmospheric Pressure. In Surface Modification of Polymers: Methods and Applications (pp. 67-106). Wiley.
  2. 2. Reniers, F., & Tewell, C. (2009). In-depth Analysis / Profiling. In J. C. Rivière & S. Myhra (Eds.), Handbook of Surface and Interface Analysis: Methods for Problem-Solving : Second edition (pp. 281-318). CRC Press.
  3. 3. Reniers, F. (1998). In-depth Analysis / Methods for Depth Profiling. In J. C. Rivière, S. Myhra, & M. Dekker (Eds.), Handbook of Surface and Interface Analysis (pp. 255-295). Marcel Dekker Inc.
  4. 4. Reniers, F. (1996). Study of the Auger metal peak of carbides and nitrides by factor analysis. In T. Oyama (Ed.), The chemistry of transition metal carbides and nitrides (pp. 473-488). New York: Chapman et Hall.
  5. 5. Reniers, F., Detroye, M., Kons, P., Kacim, S., Maoujoud, M., Soussi, M., Silberberg, E., Vandevelde, T., & Buess Herman, C. (1996). Synthesis of thin films of Cr, Mo, W carbides and nitrides. In T. Oyama (Ed.), The chemistry of transition metal carbides and nitrides (pp. 274-289). New York: Chapman et Hall.
  6.   Articles dans des revues avec comité de lecture (154)

  7. 1. Chauvin, A., Bittencourt, C., Galais, M., Sauvage, L., Bellefroid, M., Van Lint, C., Op De Beeck, A., Snyders, R., & Reniers, F. (2023). Deposition of TiOx and N-TiOx by dielectric barrier discharge at atmospheric pressure. Surface & coatings technology.
  8. 2. Buddhadasa, M., Verougstraete, B., Gomez-Rueda, Y., Petitjean, D., Denayer, J. J., & Reniers, F. (2023). A study of plasma-porous carbon-CO2interactions: Ammonia plasma treatment and CO2capture. Journal of CO2 utilization, 68, 102388. doi:10.1016/j.jcou.2022.102388
  9. 3. Eshtehardi, H. A., Van ‘t Veer, K., Delplancke, M.-P., Reniers, F., & Bogaerts, A. (2023). Postplasma Catalytic Model for NO Production: Revealing the Underlying Mechanisms to Improve the Process Efficiency. ACS Sustainable Chemistry and Engineering, 11(5), 1720-1733. doi:10.1021/acssuschemeng.2c05665
  10. 4. Bastin, O., Thulliez, M., Serra, T., Nyssen, L., Fontaine, T., Devière, J., Delchambre, A., Reniers, F., & Nonclercq, A. (2023). Electrical equivalent model of a long dielectric barrier discharge plasma jet for endoscopy. Journal of physics. D, Applied physics. doi:10.1088/1361-6463/acb603
  11. 5. Gomez-Rueda, Y., Verougstraete, B., Ranga, C., Perez-Botella, E., Reniers, F., & Denayer, J. (2022). Rapid temperature swing adsorption using microwave regeneration for carbon capture. Chemical engineering journal, 446, 137345. doi:10.1016/j.cej.2022.137345
  12. 6. Bastin, O., Thulliez, M., Delchambre, A., Devière, J., Reniers, F., & Nonclercq, A. (2022). Analysis of a nano-pulsed DBD Plasma jet for endoscopy and impact of excitation parameters. Journal of physics. D, Applied physics, 55(41), 415204. doi:10.1088/1361-6463/ac855d
  13. 7. Torres Morillo, D., Bernal, M., Demaude, A., Hussain, S., Bar, L., Losada Perez, P., Reniers, F., & Ustarroz Troyano, J. (2022). Distribution of Copper Electrochemical Nucleation Activities on Glassy Carbon: A New Perspective Based on Local Electrochemistry. Journal of the Electrochemical Society, 169(10), 102513. doi:10.1149/1945-7111/ac9717

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