Interface layers between reactive and energetic materials in nanolaminates or nanoenergetic materials are believed to play a crucial role in the properties of nanoenergetic systems. Typically, in the case of Metastable Interstitial Composite nanolaminates, the interface layer between the metal and oxide controls the onset reaction temperature, reaction kinetics, and stability at low temperature. So far, the formation of these interfacial layers is not well understood for lack of in situ characterization, leading to a poor control of important properties. We have combined in situ infrared spectroscopy and ex situ X-ray photoelectron spectroscopy, differential scanning calorimetry, and high resolution transmission electron microscopy, in conj...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceMastering interfacial layers is the current challenge for nanotechnologies whe...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
International audienceInterface layers between reactive and energetic materials in nanolaminates or ...
International audienceIn situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceNanoenergetic materials are beginning to play an important role in part becaus...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceNanolaminated materials made of nanometer-thick layers are nowadays facing the...
International audienceThis theoretical work aims to understand the influence of nanopores at CuO-Al ...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceMastering interfacial layers is the current challenge for nanotechnologies whe...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...
International audienceInterface layers between reactive and energetic materials in nanolaminates or ...
International audienceIn situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers...
In situ deposition of a thin (∼5 nm) layer of copper between Al and CuO layers is shown to increase ...
International audienceNanoenergetic materials are beginning to play an important role in part becaus...
International audienceSputter-deposited Al/CuO multilayers exhibit fast combustion reactions in whic...
International audienceNanolaminated materials made of nanometer-thick layers are nowadays facing the...
International audienceThis theoretical work aims to understand the influence of nanopores at CuO-Al ...
International audienceEnergetic materials are the only attractive sources of " dormant " energy, enj...
International audienceThe surface chemistry associated with the synthesis of energetic nanolaminates...
Sputter-deposited Al/CuO multilayers exhibit fast combustion reactions in which an exothermic chemic...
International audienceMastering interfacial layers is the current challenge for nanotechnologies whe...
International audienceSputter-deposited Al/CuO multilayers capable of highly energetic reactions hav...