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Initiation mechanisms and kinetic analysis of the isothermal decomposition of poly(α-methylstyrene): a ReaxFF molecular dynamics study

机译:聚(α-甲基苯乙烯)等温分解的引发机理和动力学分析:ReaxFF分子动力学研究

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This study investigates the thermal decomposition initiation mechanisms and kinetics of poly(α-methylstyrene) (PαMS) under isothermal conditions, using molecular dynamics simulations with the ReaxFF reactive force field. The unimolecular pyrolysis simulations show that the thermal decomposition of the PαMS molecule is initiated mainly by carbon–carbon backbone cleavage in two types at random points along the main chain that leads to different intermediates, and is accompanied by depolymerization reactions that lead to the formation of the final products. The time evolution of typical species in the process of PαMS thermal decomposition at various temperatures presents specific evolution profiles and shows a temperature-dependence effect. Isothermal decomposition kinetic analysis based on PαMS pyrolysis shows that the activation energy varies with the degree of conversion during the thermal decomposition processes, which infers that the decomposition process at different conversions may have different reaction mechanisms.
机译:本研究使用ReaxFF反应力场的分子动力学模拟研究了等温条件下聚(α-甲基苯乙烯)(PαMS)的热分解引发机理和动力学。单分子热解模拟表明,PαMS分子的热分解主要是由碳-碳主链沿主链的随机点在两种类型上的裂解引起的,该裂解导致不同的中间体,并伴随着解聚反应,导致形成最终产品。在不同温度下,PαMS热分解过程中典型物种的时间演化呈现出特定的演化曲线,并表现出温度依赖性效应。基于PαMS热解的等温分解动力学分析表明,活化能在热分解过程中随转化率的变化而变化,这表明不同转化率下的分解过程可能具有不同的反应机理。

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