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Design and fabrication of aluminum-free energetic thermites films with high activity, energy density and stability

机译:具有高活性,能量密度和稳定性的无铝优质热带薄膜的设计和制造

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Energetic thermites films have been widely used in the field of microscale energy-demanding systems because these materials can release a large amount of stored energy on combustion. Even though aluminum-based films have been studied for years, developing novel, facile, and scalable methods to synthesize energetic films with high-energy-density and high stability is still a persistent challenge. Here, we report a new concept aluminum-free thermites based on an energetic metal-organic framework [Cu(atrz)_3(NO_3)_2]_n (MOF(Cu), atrz = 4,4'-azo-1,2,4-triazole) as a fuel through the electrostatic spinning method for the first time. Compared with the traditional aluminum-based thermites films, this new films exhibit superior performances such as low electrostatic discharge sensitivities, low ignition temperatures, high heats of reaction, high activity, and production of very few solid residues. It is anticipated that this work will open a new field for the application of MOFs for energetic thermites films, while laying the groundwork for the development of new energetic materials.
机译:精力充沛的热质薄膜已广泛用于微观能源苛刻系统领域,因为这些材料可以在燃烧上释放大量的储存能量。尽管多年来已经研究了铝基薄膜,但是开发新颖的,容易和可扩展的方法,以合成具有高能密度和高稳定性的能量薄膜仍然是一种持久的挑战。在这里,我们报告了基于能量金属 - 有机框架[Cu(ATRZ)_3(NO_3)_2] _N(MOF(CU),ATRZ = 4,4'-AZO-1,2,的新概念无铝无铝热质4-三唑)作为燃料通过静电纺丝方法首次。与传统的铝基热质薄膜相比,这部新薄膜表现出优异的表现,例如低静电放电敏感性,低点火温度,反应高,活性高,以及产生的非常少的固体残留物。预计这项工作将开辟一个新的领域,用于适用于精力充沛的热质薄膜,同时为新的能量材料的开发奠定了基础。

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