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Gaseous Products Evolution Analyses for Catalytic Decomposition of AP by Graphene-Based Additives

机译:石墨烯基添加剂催化分解AP的气态产物演化分析

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摘要

A quantitative evaluation method has been developed to study the effects of nanoadditives on thermal decomposition mechanisms of energetic compounds using the conventional thermogravimetry coupled with mass spectrometry (TG/MS) technique. The decomposition of ammonium perchlorate (AP) under the effect of several energetic catalysts has been investigated as a demonstration. In particular, these catalysts are transition metal (Cu2+, Co2+ and Ni2+) complexes of triaminoguanidine (TAG), using graphene oxide (GO) as dopant. They have been well-compared in terms of their catalytic effects on the concentration of the released gaseous products of AP. These detailed quantitative analyses of the gaseous products of AP provide a proof that the proton transfer between ∙O and O2 determines the catalytic decomposition pathways, which largely depend on the type of reactive centers of the catalysts. This quantitative method could be applied to evaluate the catalytic effects of any other additives on the thermal decomposition of various energetic compounds.
机译:已开发出一种定量评估方法,以使用常规热重分析与质谱(TG / MS)技术研究纳米添加剂对高能化合物热分解机理的影响。作为例证,已经研究了在几种高能催化剂的作用下高氯酸铵(AP)的分解。尤其是,这些催化剂是三氨基胍(TAG)的过渡金属(Cu 2 + ,Co 2 + 和Ni 2 + )配合物,使用氧化石墨烯(GO)作为掺杂剂。就其对AP释放出的气态产物浓度的催化作用而言,它们已经得到了很好的比较。这些对AP气态产物的详细定量分析提供了一个证据,证明∙O和O2之间的质子转移决定了催化分解途径,这在很大程度上取决于催化剂反应中心的类型。这种定量方法可用于评估任何其他添加剂对各种高能化合物热分解的催化作用。

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