Parties d'ouvrages collectifs (4)

  1. 1. Barroo, C., Visart de Bocarmé, T., De Decker, Y., & Kruse, N. (2018). Surface Reactions Investigated at the Nanoscale by Field Emission Techniques: Nonlinear Dynamics of the Catalytic Hydrogenation of NO and NO2 Over Platinum Crystallites. In Encyclopedia of Interfacial Chemistry: Surface Science and Electrochemistry (1 ed., pp. 251-260). Elsevier.
  2. 2. De Decker, Y., Bullara, D., Barroo, C., & Visart de Bocarmé, T. (2015). Nonlinear Dynamics of Reactive Nanosystems: Theory and Experiments. In S. C. Müller & J. Parisi (Eds.), Bottom-Up Self-Organization in Supramolecular Soft Matter: Principles and Prototypical Examples of Recent Advances (pp. 127-150). Switzerland: Springer International Publishing AG.(Springer Series in Materials Science, 217). doi:10.1007/978-3-319-19410-3_6
  3. 3. Barroo, C., Bagot, P. A. J., Smith, G. D., & Visart de Bocarmé, T. (2014). Investigating Nano-structured Catalysts at the Atomic-scale by Field Ion Microscopy and Atom Probe Tomography. In T. Visart de Bocarmé & S. Hermans (Eds.), Atomically precise methods for synthesis of solid catalysts (p. 300). Royal Society of Chemistry.(Catalysis Series). doi:10.1039/9781782628439-00248
  4. 4. Kruse, N., & Visart de Bocarmé, T. (2008). Heterogeneous Catalysis and High Electric Fields. In G. Ertl, H. Knözinger, F. Schüth, & J. Weitkamp (Eds.), Handbook of Heterogeneous Catalysis (2 ed., pp. 870-895). Weinheim, Germany: Wiley-VCH Verlag GmbH& Co.
  5.   Articles dans des revues avec comité de lecture (79)

  6. 1. Lambeets, S., Cardwell, N., Onyango, I., Wirth, M. G., Teng, J., Orren, G. J., Devaraj, A., Visart de Bocarmé, T., McEwen, J.-S., & Perea, D. D. (2022). Dynamic observation of electro-assisted Fe oxidation by Operando Atom Probe. Microscopy and microanalysis, 28, 724-725. doi:10.1017/S143192762200335X
  7. 2. Jacobs, L., Barroo, C., & Visart de Bocarmé, T. (2020). Surface Reconstruction of Ag and Au–Ag Model Nano-catalysts During Exposure to Oxidising Gas Atmospheres. Topics in catalysis. doi:10.1007/s11244-020-01365-1
  8. 3. Owczarek, S., Lambeets, S., Bryl, R., Barroo, C., Croquet, O., Markowski, L., & Visart de Bocarmé, T. (2020). Oxygen Adsorption, Subsurface Oxygen Layer Formation and Reaction with Hydrogen on Surfaces of a Pt–Rh Alloy Nanocrystal. Topics in catalysis. doi:https://doi.org/10.1007/s11244-020-01394-w
  9. 4. Jacobs, L., von Boehn, B., Homann, M., Barroo, C., Visart de Bocarmé, T., & Imbihl, R. (2020). On the importance of the structure in the catalytic reactivity of Au-based catalysts. Applied surface science, 525, 146568. doi:10.1016/j.apsusc.2020.146568
  10. 5. Lambeets, S., Visart de Bocarmé, T., Perea, D. D., & Kruse, N. (2020). Directional Gateway to Metal Oxidation: 3D Chemical Mapping Unfolds Oxygen Diffusional Pathways in Rhodium Nanoparticles. The Journal of Physical Chemistry Letters, 11(8), 3144-3151. doi:10.1021/acs.jpclett.0c00321
  11. 6. Iablokov, V., Alekseev, S. S., Gryn, S. S., Bezverkhyy, I., Zaitsev, V., Kovarik, L., Visart de Bocarmé, T., & Kruse, N. (2020). Superior Fischer-Tropsch performance of uniform cobalt nanoparticles deposited into mesoporous SiC. Journal of catalysis, 383, 297-303. doi:10.1016/j.jcat.2020.01.028
  12. 7. Lambeets, S., Visart de Bocarmé, T., Kruse, N., & Perea, D. D. (2019). Surface/Subsurface Interactions During Rh Oxidation Revealed by Atom Probe Tomography and Microscopy. Microscopy and microanalysis, 25, 330-331. doi:10.1017/S1431927619002381
  13. 8. Jacobs, L., Barroo, C., Von Boehn, B., Homann, M., Imbihl, R., & Visart de Bocarmé, T. (2019). Understanding Fundamental Processes on Au-Ag Catalysts during Oxidation Reactions: a Correlative Microscopy Approach. Microscopy and microanalysis, 25(2), 10.1017/S1431927619002289, 310-311.

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