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Nanowire Membrane-based Nanothermite: towards Processable and Tunable Interfacial Diffusion for Solid State Reactions

机译:基于纳米线膜的Nanothermite:面向固态反应的可加工和可调界面扩散。

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摘要

Interfacial diffusion is of great importance in determining the performance of solid-state reactions. For nanometer sized particles, some solid-state reactions can be triggered accidently by mechanical stress owing to their large surface-to-volume ratio compared with the bulk ones. Therefore, a great challenge is the control of interfacial diffusion for solid state reactions, especially for energetic materials. Here we demonstrate, through the example of nanowire-based thermite membrane, that the thermite solid-state reaction can be easily tuned via the introduction of low-surface-energy coating layer. Moreover, this silicon-coated thermite membrane exhibit controlled wetting behavior ranging from superhydrophilic to superhydrophobic and, simultaneously, to significantly reduce the friction sensitivity of thermite membrane. This effect enables to increase interfacial resistance by increasing the amount of coating material. Indeed, our results described here make it possible to tune the solid-state reactions through the manipulation of interfacial diffusion between the reactants.
机译:界面扩散对于确定固态反应的性能非常重要。对于纳米级颗粒,由于与大体积颗粒相比,其大的表面积体积比,某些固态反应可能会由于机械应力而意外触发。因此,对于固态反应,特别是对于高能材料,控制界面扩散是一个巨大的挑战。在这里,我们通过基于纳米线的铝热膜的示例证明,通过引入低表面能涂层可以轻松调整铝热固相反应。而且,该涂硅的铝热剂膜表现出从超亲水性到超疏水性的​​受控润湿行为,并且同时显着降低了铝热剂膜的摩擦敏感性。该效果使得能够通过增加涂层材料的量来增加界面阻力。实际上,本文所述的结果使得可以通过控制反应物之间的界面扩散来调节固态反应。

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