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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Oxidation of Graphene-Edge Six- and Five-Member Rings by Molecular Oxygen
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Oxidation of Graphene-Edge Six- and Five-Member Rings by Molecular Oxygen

机译:石墨烯边缘的六元环和五元环被分子氧氧化

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To gain qualitative and quantitative understanding Of oxidation processes of large polycyclic aromatics, soot particles, and graphene edges, a theoretical Study is reported for the pyrenyl-O-2 reaction system. First, possible reaction pathways and their energetics were investigated Using high-level ab initio calculations. The results were utilized in RRKM-master equation calculations of rate coefficients and relative product yields at temperatures and pressures relevant to combustion. Finally, the deduced oxidation mechanisms of six- and five-member rings and the computed rate coefficients were employed in kinetic Monte Carlo simulations of oxidation of a graphene "molecule" evolving inflame-like environments. Among the major findings from the latter simulations are the following: The oxidation system exhibits two basic pathways, thermal decomposition and regeneration of oxyradicals. Their competition is temperature-dependent, with the former dominating,at higher and the latter at lower temperatures. The overall oxidation of the graphene time-dependent, with the initial rates consistent with the known experimental data. substrate is computed to be
机译:为了获得定性和定量的了解,对大型多环芳烃,烟灰颗粒和石墨烯边缘的氧化过程进行了理论研究,研究了enyl-O-2反应体系。首先,使用高级从头算研究了可能的反应途径及其能量学。将结果用于与燃烧相关的温度和压力下的速率系数和相对产物产率的RRKM主方程计算中。最后,推导的六元环和五元环的氧化机理以及计算出的速率系数被用于动力学的蒙特卡罗模拟,以模拟石墨状“分子”在类似火焰的环境中的氧化。在后面的模拟中,主要发现如下:氧化系统表现出两个基本途径,即热分解和氧自由基的再生。它们的竞争取决于温度,前者在较高温度下占主导,后者在较低温度下占主导。石墨烯的总氧化时间依赖性,初始速率与已知实验数据一致。底物被计算为

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