International audienceThe complex Al/CuO self-propagating reaction involving multi-phase and multi-species dynamics was studied in order to investigate the very high flame temperature around the vaporization temperature of alumina, even under a neutral environment. Experiments were performed on different sputter-deposited Al/CuO multilayers coupling optical spectroscopy with high speed camera measurements. The clear presence of both AlO and Al signatures in gas phase suggests that the redox reaction starts in the bulk nanolaminate, which then rapidly tear off the substrate to continue burning in a heterogeneous (condensed and gas) phase in the environment. The flame temperature increases with the stoichiometry but is independent of the bila...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceThe paper reports a joint experimental/theoretical study on the aging of react...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe complex Al/CuO self-propagating reaction involving multi-phase and multi-s...
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 audienceThis paper reports on the reaction characteristic of Al/CuO reactive nanolamin...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
International audienceReactive nanolaminates are a high-energy-density configuration for energetics ...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceThe paper reports a joint experimental/theoretical study on the aging of react...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe complex Al/CuO self-propagating reaction involving multi-phase and multi-s...
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 audienceThis paper reports on the reaction characteristic of Al/CuO reactive nanolamin...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
International audienceReactive nanolaminates are a high-energy-density configuration for energetics ...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceThe paper reports a joint experimental/theoretical study on the aging of react...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...