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Items where Author is "Bouhali, Othmane"

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Number of items: 7.

B

Bentria, E. T., N'tsouaglo, G. K., Becquart, C. S., Bouhali, O., Mousseau, N., & El-Mellouhi, F. (2017). The role of emerging grain boundary at iron surface, temperature and hydrogen on metal dusting initiation. ACTA Materialia, 135, 340-347. External link

C

Chakrabarty, A., Bouhali, O., Mousseau, N., Becquart, C. S., & El-Mellouhi, F. (2016). Influence of surface vacancy defects on the carburisation of Fe 110 surface by carbon monoxide. Journal of Chemical Physics, 145(4), 044710 (10 pages). External link

Chakrabarty, A., Bouhali, O., Mousseau, N., Becquart, C. S., & El-Mellouhi, F. (2016). Insights on finite size effects in ab initio study of CO adsorption and dissociation on Fe 110 surface. Journal of Applied Physics, 120(5), 055301. External link

R

Restrepo, O. A., Mousseau, N., Trochet, M., El-Mellouhi, F., Bouhali, O., & Becquart, C. S. (2018). Carbon diffusion paths and segregation at high-angle tilt grain boundaries in α-Fe studied by using a kinetic activation-relation technique. Physical Review B, 97(5), 054309. External link

Restrepo, Ó. A., Becquart, C. S., El-Mellouhi, F., Bouhali, O., & Mousseau, N. (2017). Diffusion mechanisms of C in 100, 110 and 111 Fe surfaces studied using kinetic activation-relaxation technique. ACTA Materialia, 136, 303-314. External link

Restrepo, Ó. A., Mousseau, N., El-Mellouhi, F., Bouhali, O., Trochet, M., & Becquart, C. S. (2016). Diffusion properties of Fe-C systems studied by using kinetic activation-relaxation technique. Computational Materials Science, 112, Part, 96-106. External link

S

Sahputra, I. H., Chakrabarty, A., Restrepo, O., Bouhali, O., Mousseau, N., Becquart, C. S., & El-Mellouhi, F. (2017). Carbon adsorption on and diffusion through the Fe(110) surface and in bulk: Developing a new strategy for the use of empirical potentials in complex material set-ups. Physica Status Solidi B-Basic Solid State Physics, 254(2), 1600408 (10 pages). External link

List generated on: Fri Apr 25 06:12:42 2025 EDT