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Thermal decomposition of hydroxylamine nitrate studied by differential scanning calorimetry analysis and density functional theory calculations

机译:通过差示扫描量热法分析和密度泛函理论计算研究羟胺硝酸盐的热分解

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摘要

The thermal stability and kinetics of hydroxylamine nitrate (HAN) decomposition were studied by differential scanning calorimetry (DSC) and the thermal decomposition reaction mechanism was determined by density functional theory (DFT). With the help of parameter values from the non-isothermal DSC curves of HAN, the thermal decomposition activation energy and pre-exponential constant were obtained by the Kissinger and Ozawa methods. Then, the most probable mechanism function was calculated by the Satava-Sestak method. Seven different paths for the thermal decomposition mechanism of HAN were formulated and DFT at the B3LYP/6-311++G(d, p) level was used to carry out the dynamics analysis. The calculated results show that the values of the activation energy calculated by the Kissinger and Ozawa methods are 67.892 and 70.412 kJ mol(-1) respectively. The most probable mechanism function calculated by the Satava-Sestak method is F(alpha) = (1-alpha)(-1/17). The path being favoured energetically in the dynamics is in the order: Path6 Path5 Path4 Path1 Path2 Path7 Path3.
机译:通过差示扫描量热法(DSC)研究了羟胺硝酸盐(HAN)分解的热稳定性和动力学,并通过密度函数理论(DFT)测定热分解反应机理。在汉族非等温DSC曲线的参数值的帮助下,通过基辛格和ozawa方法获得热分解激活能量和预指数常数。然后,通过Satava-Sestak方法计算最可能的机制功能。制定七种不同的汉族热分解机制的路径,并在B3LYP / 6-311 ++ G(D,P)水平下进行DFT来进行动力学分析。计算结果表明,由基辛格和ozawa方法计算的激活能量的值分别为67.892和70.412 kJ摩尔(-1)。 SATAVA-SESTAK方法计算的最可能的机制功能是F(α)=(1-α)( - 1/17)。在动态中大力赞成的路径是按顺序:PATH6> Path5& path4& Path1& path2& Path7&路径3。

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