Al/CuO energetic structure are attractive materials due to their high thermal output and propensity to produce gas. They are widely used to bond components or as next generation of MEMS igniters. In such systems, the reaction process is largely dominated by the outward migration of oxygen atoms from the CuO matrix toward the aluminum layers, and many recent studies have already demonstrated that the interfacial nanolayer between the two reactive layers plays a major role in the material properties. Here we demonstrate that the ALD deposition of a thin ZnO layer on the CuO prior to Al deposition (by sputtering) leads to a substantial increase in the efficiency of the overall reaction. The CuO/ZnO/Al foils generate 98% of their theoretical en...
International audienceThermite multilayered films composed of alternating thin layers of metal/oxidi...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceAl/CuO energetic structure are attractive materials due to their high thermal ...
International audienceInterface layers between reactive and energetic materials in nanolaminates or ...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceIn this study we demonstrate the effect of change of the sputtering power and ...
International audienceThermite multilayered films composed of alternating thin layers of metal/oxidi...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceAl/CuO energetic structure are attractive materials due to their high thermal ...
International audienceInterface layers between reactive and energetic materials in nanolaminates or ...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceSputter‐deposited Al/CuO multilayers represent the state‐of‐the‐art of energet...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
International audienceIn this study we demonstrate the effect of change of the sputtering power and ...
International audienceThermite multilayered films composed of alternating thin layers of metal/oxidi...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...