DocumentCode
1082691
Title
Nanoenergetic Materials for MEMS: A Review
Author
Rossi, Carole ; Zhang, Kaili ; Estève, Daniel ; Alphonse, Pierre ; Tailhades, Philippe ; Vahlas, Constantin
Author_Institution
Centre Nat. de la Recherche Sci., Toulouse
Volume
16
Issue
4
fYear
2007
Firstpage
919
Lastpage
931
Abstract
New energetic materials (EMs) are the key to great advances in microscale energy-demanding systems as actuation part, igniter, propulsion unit, and power. Nanoscale EMs (nEMs) particularly offer the promise of much higher energy densities, faster rate of energy release, greater stability, and more security (sensitivity to unwanted initiation). nEMs could therefore give response to microenergetics challenges. This paper provides a comprehensive review of current research activities in nEMs for microenergetics application. While thermodynamic calculations of flame temperature and reaction enthalpies are tools to choose desirable EMs, they are not sufficient for the choice of good material for microscale application where thermal losses are very penalizing. A strategy to select nEM is therefore proposed based on an analysis of the material diffusivity and heat of reaction. Finally, after a description of the different nEMs synthesis approaches, some guidelines for future investigations are provided.
Keywords
micromechanical devices; nanostructured materials; reviews; MEMS; material diffusivity analysis; microelectromechanical system; microenergetics application; microscale energy-demanding systems; nanoenergetic materials; nanoscale energetic material; Fires; Guidelines; Micromechanical devices; Nanoelectromechanical systems; Nanostructured materials; Power system security; Propulsion; Stability; Temperature sensors; Thermodynamics; Materials processing; materials science and technology; microelectromechanical devices; microelectromechanical system (MEMS); micropyrotechnics; nanoscale energetic materials (nEMs); propulsion; synthesis; thermal power generation;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2007.893519
Filename
4285648
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