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Metal-oxide-based energetic materials and synthesis thereof

机译:基于金属氧化物的含能材料及其合成

摘要

A method of preparing energetic metal-oxide-based energetic materials using sol-gel chemistry has been invented. The wet chemical sol-gel processing provides an improvement in both safety and performance. Essentially, a metal-oxide oxidizer skeletal structure is prepared from hydrolyzable metals (metal salts or metal alkoxides) with fuel added to the sol prior to gelation or synthesized within the porosity metal-oxide gel matrix. With metal salt precursors a proton scavenger is used to destabilize the sol and induce gelation. With metal alkoxide precursors standard well-known sol-gel hydrolysis and condensation reactions are used. Drying is done by standard sol-gel practices, either by a slow evaporation of the liquid residing within the pores to produce a high density solid nanocomposite, or by supercritical extraction to produce a lower density, high porous nanocomposite. Other ingredients may be added to this basic nanostructure to change physical and chemical properties, which include organic constituents for binders or gas generators during reactions, burn rate modifiers, or spectral emitters.
机译:已经发明了使用溶胶-凝胶化学制备基于金属氧化物的高能材料的方法。湿法化学溶胶-凝胶工艺可提高安全性和性能。本质上,金属氧化物氧化剂的骨架结构是由可水解金属(金属盐或金属醇盐)制成的,燃料是在胶凝之前添加到溶胶中或在多孔金属氧化物凝胶基质中合成的。对于金属盐前体,质子清除剂用于使溶胶不稳定并诱导胶凝。对于金属醇盐前体,使用标准的众所周知的溶胶-凝胶水解和缩合反应。通过标准的溶胶-凝胶方法进行干燥,方法是缓慢蒸发残留在孔中的液体以产生高密度的固体纳米复合材料,或通过超临界萃取来产生较低密度的高多孔性纳米复合材料。可以将其他成分添加到该基本纳米结构中以更改物理和化学性质,其中包括反应期间用于粘合剂或气体发生器的有机成分,燃烧速率调节剂或光谱发射器。

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