Overview
ABSTRACT
Advances in the energetic domain require the development of new generations of energetic materials conceived for microsystem applications. Nanotechnologies, with the prospects of mastery of composition and structure at the nanometric scale, have come at the right time to meet this need. Indeed, the means of improvement for conventional materials and also those for the synthesis of thermal nanocomposite materials are numerous and promising. Observations have established that certain properties of the energetic materials, such as the initiation temperature and the combustion velocity are strongly influenced by the lay-out and contact intimacy of the components.
Read this article from a comprehensive knowledge base, updated and supplemented with articles reviewed by scientific committees.
Read the articleAUTHOR
INTRODUCTION
Until the 1980s-1990s, energetic materials were mainly used in military and space applications, with a few civil applications such as mining.
In the early 1990s, the idea emerged of integrating energetic materials into silicon microsystems, with a view to achieving local micro-actuation in extremely small volumes (less than mm 3 ) and with relatively high forces (~ 0.1 N).
Today's applications are more demanding, requiring the creation of new generations of energetic materials strictly designed for microsystem applications: we need to ensure both energetic performance and technological compatibility. Against this backdrop, the emergence of nanotechnologies is opening up new, as yet unexplored prospects for energetic materials: the creation of high-performance nanostructured materials, i.e. where composition and structure are controlled at the nanometric, if not molecular, scale. We can also hope to create energetic materials with controlled chemical and thermal decomposition. The field to be explored is extremely vast.
This can be usefully reduced by giving priority to energetic materials already used in microelectronics. The dossier offers a comprehensive exploration of the potential contribution of nanotechnologies in the field of integrable energetic materials, based on the results of the first published research projects.
Exclusive to subscribers. 97% yet to be discovered!
Already subscribed? Log in!
Energetic nanomaterials: perspectives of integration into microsystems
Article included in this offer
"Nanosciences and nanotechnologies"
(
139 articles
)
Updated and enriched with articles validated by our scientific committees
A set of exclusive tools to complement the resources
Bibliography
File references
Exclusive to subscribers. 97% yet to be discovered!
Already subscribed? Log in!