Les thermites, matériaux énergétiques composites à base de métaux et d'oxydes, sont des candidats prometteurs pour remplacer les matériaux conventionnels (CHNO) utilisés dans les systèmes pyrotechniques actuels. En effet, ils sont capables de générer une grande quantité d'énergie chimique en un temps très court (µs) suite à un stimulus électrique, mécanique ou thermique, tout en étant plus surs. Parmi les couples thermites nouvellement explorés, les nanothermites à base d'aluminium (Al) et d'oxyde de cuivre (CuO), tous deux dans des dimensions nanométriques, présentent un réel intérêt applicatif car ils sont intégrables en technologie couche mince pour être compatibles avec l'intégration ultime et remplacer les compositions primaires des in...
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...
The thermite reaction between Al and CuO is well known and highly exothermic. For a conventional the...
National audienceThermites, composite energetic materials based on metals and oxides, are promising ...
Les matériaux énergétiques sont les seuls capables de générer une grande quantité d'énergie thermiqu...
Les thermites permettent, une fois initiées, de générer une grande quantité d'énergie chimique, stoc...
National audienceEnergetic materials are able to generate high amount of thermal or mechanical energ...
Al/CuO multilayer nanothermite, caractrization and application Energetic materials are a class of ma...
National audienceThermite materials allow, once ignited, to release a great amount of chemical energ...
International audienceSputter-deposited Al/CuO multilayers are used to manufacture tunable igniters ...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
This work deals with the development of integration processes of thermite energetic layers (a materi...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
National audienceAmong the energetic materials, nanothermites are known for their high reactivity an...
Nanothermite mixtures are made up of nano-sized metallic fuel and inorganic oxidizer components. As ...
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...
The thermite reaction between Al and CuO is well known and highly exothermic. For a conventional the...
National audienceThermites, composite energetic materials based on metals and oxides, are promising ...
Les matériaux énergétiques sont les seuls capables de générer une grande quantité d'énergie thermiqu...
Les thermites permettent, une fois initiées, de générer une grande quantité d'énergie chimique, stoc...
National audienceEnergetic materials are able to generate high amount of thermal or mechanical energ...
Al/CuO multilayer nanothermite, caractrization and application Energetic materials are a class of ma...
National audienceThermite materials allow, once ignited, to release a great amount of chemical energ...
International audienceSputter-deposited Al/CuO multilayers are used to manufacture tunable igniters ...
International audienceThe ignition of Al/CuO multilayered material is studied experimentally to expl...
This work deals with the development of integration processes of thermite energetic layers (a materi...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
National audienceAmong the energetic materials, nanothermites are known for their high reactivity an...
Nanothermite mixtures are made up of nano-sized metallic fuel and inorganic oxidizer components. As ...
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...
The thermite reaction between Al and CuO is well known and highly exothermic. For a conventional the...