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Three-dimensionally Ordered Macroporous Structure Enabled Nanothermite Membrane of Mn2O3/Al

机译:三维有序大孔结构的Mn2O3 / Al纳米炭膜

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摘要

Mn2O3 has been selected to realize nanothermite membrane for the first time in the literature. Mn2O3/Al nanothermite has been synthesized by magnetron sputtering a layer of Al film onto three-dimensionally ordered macroporous (3DOM) Mn2O3 skeleton. The energy release is significantly enhanced owing to the unusual 3DOM structure, which ensures Al and Mn2O3 to integrate compactly in nanoscale and greatly increase effective contact area. The morphology and DSC curve of the nanothermite membrane have been investigated at various aluminizing times. At the optimized aluminizing time of 30?min, energy release reaches a maximum of 2.09?kJ?g(-1), where the Al layer thickness plays a decisive role in the total energy release. This method possesses advantages of high compatibility with MEMS and can be applied to other nanothermite systems easily, which will make great contribution to little-known nanothermite research.
机译:在文献中首次选择了Mn2O3来实现纳米热膜。 Mn2O3 / Al纳米铝热剂是通过磁控溅射在三维有序大孔(3DOM)Mn2O3骨架上沉积一层铝膜而合成的。由于具有独特的3DOM结构,能量释放显着增强,这确保了Al和Mn2O3在纳米级紧密集成,并大大增加了有效接触面积。在不同的镀铝时间下研究了纳米热膜的形貌和DSC曲线。在优化的渗铝时间为30?min时,能量释放达到最大2.09?kJ?g(-1),其中Al层厚度在总能量释放中起决定性作用。该方法具有与MEMS高度兼容的优点,可以容易地应用于其他纳米热液体系,这将为鲜为人知的纳米热液研究做出巨大贡献。

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