International audienceIn this paper, we use a multi-levels modeling approach to describe the elaboration of directly integrated energetic materials. The deposition of copper oxide on aluminum substrate is described. Atomic scale calculations are first conducted to identify local mechanisms involved during the growth of CuO on Al(111). These atomic scale data are then used to parameterize a macroscopic code, inspired on a kinetic Monte Carlo methodology dedicated to simulate vapor like deposition process. The objective is to establish the link between the microstructure of materials and the way they are achieved, i.e. the process parameters such as temperature and gas pressure. This work is conducted in the context of the integration of nano...
International audienceIn this study we demonstrate the effect of change of the sputtering power and ...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
Understanding the physical vapor deposition (PVD) process of metallic coatings on an inorganic subst...
International audienceIn this paper, we use a multi-levels modeling approach to describe the elabora...
International audienceMastering interfacial layers is the current challenge for nanotechnologies whe...
International audienceNanolaminated materials made of nanometer-thick layers are nowadays facing the...
International audienceNew advanced nanoscale-controlled materials could offer unique functionalities...
Cette thèse a pour but d'établir le lien entre la microstructure des matériaux et leurs propriétés m...
Interface layers between reactive and energetic materials in nanolaminates or nanoenergetic material...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
Among the diversity of energetic materials existing nowadays, nanothermites are widely studied and u...
International audienceIn this study we demonstrate the effect of change of the sputtering power and ...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
Understanding the physical vapor deposition (PVD) process of metallic coatings on an inorganic subst...
International audienceIn this paper, we use a multi-levels modeling approach to describe the elabora...
International audienceMastering interfacial layers is the current challenge for nanotechnologies whe...
International audienceNanolaminated materials made of nanometer-thick layers are nowadays facing the...
International audienceNew advanced nanoscale-controlled materials could offer unique functionalities...
Cette thèse a pour but d'établir le lien entre la microstructure des matériaux et leurs propriétés m...
Interface layers between reactive and energetic materials in nanolaminates or nanoenergetic material...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
Among the diversity of energetic materials existing nowadays, nanothermites are widely studied and u...
International audienceIn this study we demonstrate the effect of change of the sputtering power and ...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
Understanding the physical vapor deposition (PVD) process of metallic coatings on an inorganic subst...