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Improved Energetic-Behaviors of Spontaneously Surface-Mediated Al Particles

机译:自发表面介导的铝粒子的改进的能量行为

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摘要

Surface-mediated Al particles are synthesized by incorporating the stable fluoride reaction of Al-F on a pure Al surface in place of natural oxides. Al particles with fluoro-polymer directly adsorbed on the surface show a considerable capability to overcome limitations caused by the surface oxide. Here, we report that Al fluoride when spontaneously formed at the poly(vinylidene fluoride)/Al interface serves as an oxidation-protecting layer while also providing an efficient combustion path along which the internal Al rapidly reacts with external oxygen atoms. Both thermal oxidation and explosion tests of the poly(vinylidene fluoride)/Al particles show superior exothermic enthalpy energy and simultaneously rapid oxidation reactivity compared to those of Al2O3 passivated Al particles. It is clearly elucidated that the enhanced energetic properties of Al particles mediated by poly(vinylidene fluoride) originate from the extraordinary pyrolytic process of Al fluoride occurring at a low temperature compared to Al2O3 passivated Al. Hence, these results clarify that the surface mediation of Al particles can be significantly considered as advanced technology for many energetic applications.
机译:表面介导的Al颗粒是通过在纯Al表面上代替天然氧化物掺入Al-F的稳定氟化反应来合成的。具有直接吸附在表面上的含氟聚合物的Al颗粒具有克服由表面氧化物引起的限制的显着能力。在这里,我们报道氟化铝在聚偏二氟乙烯/ Al界面上自发形成时起氧化保护层的作用,同时还提供了有效的燃烧路径,内部Al沿着该燃烧路径与外部氧原子快速反应。与Al2O3钝化的Al颗粒相比,聚偏二氟乙烯/ Al颗粒的热氧化和爆炸测试均显示出优异的放热焓能和快速的氧化反应性。清楚地阐明,与被Al 2 O 3钝化的Al相比,由聚偏二氟乙烯介导的Al颗粒的增强的能量性质源自在低温下发生的氟化铝的非常规热解过程。因此,这些结果表明,Al颗粒的表面介导可以被视为许多高能应用的先进技术。

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