International audienceIn this study we demonstrate the effect of change of the sputtering power and the deposition pressure on the ignition and the combustion properties of Al/CuO reactive thin films. A reduced sputtering power of Al along with the deposition carried out at a higher-pressure result in a high-quality thin film showing a 200% improvement in the burn rate and a 50% drop in the ignition energy. This highlights the direct implication of the change of the process parameters on the responsivity and the reactivity of the reactive film while maintaining the Al and CuO thin-film integrity both crystallographically and chemically. Atomically resolved structural and chemical analyzes enabled us to qualitatively determine how the micros...
International audienceAl/CuO energetic structure are attractive materials due to their high thermal ...
International audienceSputter-deposited Al/CuO multilayers are used to manufacture tunable igniters ...
Al/CuO reactive nanolaminate ignition was studied using temperature jump (T-Jump) heating for rates ...
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...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceReactive multilayer films are a high energy dense configuration for energetics...
International audienceThis paper reports on the reaction characteristic of Al/CuO reactive nanolamin...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceThe complex Al/CuO self-propagating reaction involving multi-phase and multi-s...
Interface layers between reactive and energetic materials in nanolaminates or nanoenergetic material...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
Multilayered Al/CuO thermite was deposited by a dc reactive magnetron sputtering method. Pure Al and...
Les thermites, matériaux énergétiques composites à base de métaux et d'oxydes, sont des candidats pr...
International audienceAl/CuO energetic structure are attractive materials due to their high thermal ...
International audienceSputter-deposited Al/CuO multilayers are used to manufacture tunable igniters ...
Al/CuO reactive nanolaminate ignition was studied using temperature jump (T-Jump) heating for rates ...
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...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceReactive multilayer films are a high energy dense configuration for energetics...
International audienceThis paper reports on the reaction characteristic of Al/CuO reactive nanolamin...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceThe complex Al/CuO self-propagating reaction involving multi-phase and multi-s...
Interface layers between reactive and energetic materials in nanolaminates or nanoenergetic material...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
Multilayered Al/CuO thermite was deposited by a dc reactive magnetron sputtering method. Pure Al and...
Les thermites, matériaux énergétiques composites à base de métaux et d'oxydes, sont des candidats pr...
International audienceAl/CuO energetic structure are attractive materials due to their high thermal ...
International audienceSputter-deposited Al/CuO multilayers are used to manufacture tunable igniters ...
Al/CuO reactive nanolaminate ignition was studied using temperature jump (T-Jump) heating for rates ...