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Nanoenergetic Materials for MEMS: A Review

机译:用于MEMS的纳米能材料:综述

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摘要

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.
机译:新的高能材料(EMs)是微型能源需求系统(如致动部件,点火器,推进装置和动力)取得重大进展的关键。纳米级EM(nEM)特别提供了更高的能量密度,更快的能量释放速率,更高的稳定性以及对意外启动的更高安全敏感性的承诺。因此,nEM可以应对微能学挑战。本文提供了对微能量学应用中nEMs当前研究活动的全面综述。虽然火焰温度和反应焓的热力学计算是选择所需EM的工具,但对于热损失非常不利的微型应用,它们还不足以选择好的材料。因此,基于对材料扩散率和反应热的分析,提出了选择nEM的策略。最后,在描述了不同的nEMs合成方法之后,提供了一些将来研究的指南。

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