International audienceTo reduce the size inconvenience of airbag systems employed in human-body protection devices while maintaining comparable gas generation performance, a new family of gas-generating energetic composites are proposed mixing Al/CuO nanothermite with copper complex (Cu(NH 3) 4 (NO 3) 2) known for its propensity to generate gases (0.03 mol/g) such as , , through exothermic chemical decomposition (300 J/g). The aluminum (Al)/Copper oxide (CuO) couple, known as the most widely studied nanomaterial for thermite reactions, releasing a high energy, mostly heat, through chemical reaction, is employed as a source of heat to trigger and sustain the decomposition of Cu(NH 3) 4 (NO 3) 2 complex. This work permits developing a new fam...
In the present work, an attempt has been made to unveil the effect of micro- and nano-particles of c...
This work focuses on the use of tailored copper oxide nanoarchitectures as multi-functional material...
National audienceEnergetic materials are able to generate high amount of thermal or mechanical energ...
International audienceTo reduce the size inconvenience of airbag systems employed in human-body prot...
International audienceTo reduce the size inconvenience of airbag systems employed in human-body prot...
International audienceA prior investigation by the authors demonstrated that incorporating 25% of co...
The thermite reaction between Al and CuO is well known and highly exothermic. For a conventional the...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
In this study, we systematically investigated the effect of micro- and nanoscale energetic materials...
doi:10.1063/1.2787972Nanothermite composites containing metallic fuel and inorganic oxidizer are gai...
International audienceThe association of a metallic fuel (usually aluminum) with an oxidizer (metal ...
International audienceWe report on a new strategy to synthesize Al/CuO nanothermites from commercial...
AbstractMetal powders such as aluminum nanoparticles (Al NPs) have been found huge potential as reac...
International audienceOver the next few years, it is expected that new, energetic, multifunctional m...
Hydrogen has universally been considered a reliable source of future clean energy. Its energy conver...
In the present work, an attempt has been made to unveil the effect of micro- and nano-particles of c...
This work focuses on the use of tailored copper oxide nanoarchitectures as multi-functional material...
National audienceEnergetic materials are able to generate high amount of thermal or mechanical energ...
International audienceTo reduce the size inconvenience of airbag systems employed in human-body prot...
International audienceTo reduce the size inconvenience of airbag systems employed in human-body prot...
International audienceA prior investigation by the authors demonstrated that incorporating 25% of co...
The thermite reaction between Al and CuO is well known and highly exothermic. For a conventional the...
This paper reports on the ignition and flame propagation characteristics of aluminum/copper oxide (A...
In this study, we systematically investigated the effect of micro- and nanoscale energetic materials...
doi:10.1063/1.2787972Nanothermite composites containing metallic fuel and inorganic oxidizer are gai...
International audienceThe association of a metallic fuel (usually aluminum) with an oxidizer (metal ...
International audienceWe report on a new strategy to synthesize Al/CuO nanothermites from commercial...
AbstractMetal powders such as aluminum nanoparticles (Al NPs) have been found huge potential as reac...
International audienceOver the next few years, it is expected that new, energetic, multifunctional m...
Hydrogen has universally been considered a reliable source of future clean energy. Its energy conver...
In the present work, an attempt has been made to unveil the effect of micro- and nano-particles of c...
This work focuses on the use of tailored copper oxide nanoarchitectures as multi-functional material...
National audienceEnergetic materials are able to generate high amount of thermal or mechanical energ...