热分解
分解
化学
反应机理
计算化学
燃烧
物理化学
催化作用
生物化学
有机化学
作者
Qingzhao Chu,Xiaolong Fu,Dongping Chen
标识
DOI:10.26434/chemrxiv-2023-5mvkg
摘要
The decomposition network of AP is essential for the combustion performance and safety of solid propellants, while the detailed reaction pathway during thermolysis is far from clear due to the ultrafast and complex reactions involved. Herein, we present direct atomic simulations of AP thermal decomposition and propose a detailed decomposition network to fill the missing piece in the kinetics models, by using a neural network model derived from ab initio calculations. The proton transfer is the dominant channel (NH4 + ClO4 -> NH3 + HClO4), which is also observed in previous mass spectra experiments. In addition, gas products from decomposition play a critical role in promoting the decomposition of solid AP. For example, the H abstraction reaction by OH is found to be a critical pathway for AP decomposition. These simulations provide atomic insights into the complex reaction dynamics of AP and can be extended to investigate the reaction mechanism of novel energetic materials.
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