首页> 外文期刊>The Journal of Chemical Physics >Absolute fragmentation cross sections in atom-molecule collisions: Scaling laws for non-statistical fragmentation of polycyclic aromatic hydrocarbon molecules
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Absolute fragmentation cross sections in atom-molecule collisions: Scaling laws for non-statistical fragmentation of polycyclic aromatic hydrocarbon molecules

机译:原子-分子碰撞中的绝对碎裂截面:多环芳烃分子非统计碎裂的尺度定律

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摘要

We present scaling laws for absolute cross sections for non-statistical fragmentation in collisions between Polycyclic Aromatic Hydrocarbons (PAH/PAH~+) and hydrogen or helium atoms with kinetic energies ranging from 50 eV to 10 keV. Further, we calculate the total fragmentation cross sections (including statistical fragmentation) for 110 eV PAH/PAH~+ + He collisions, and show that they compare well with experimental results. We demonstrate that non-statistical fragmentation becomes dominant for large PAHs and that it yields highly reactive fragments forming strong covalent bonds with atoms (H and N) and molecules (C_6H_5). Thus nonstatistical fragmentation may be an effective initial step in the formation of, e.g., Polycyclic Aromatic Nitrogen Heterocycles (PANHs). This relates to recent discussions on the evolution of PAHNs in space and the reactivities of defect graphene structures.
机译:我们提出了多环芳烃(PAH / PAH〜+)与动能范围从50 eV到10 keV的氢或氦原子之间的碰撞中非统计断裂的绝对截面的定律。此外,我们计算了110 eV PAH / PAH〜+ + He碰撞的总断裂截面(包括统计断裂),并显示它们与实验结果具有很好的比较。我们证明了非统计碎片成为大PAHs的主导,它产生了高反应性的碎片,与原子(H和N)和分子(C_6H_5)形成了强大的共价键。因此,非统计片段化可能是形成例如多环芳族氮杂环(PANH)的有效初始步骤。这涉及到有关PAHN在空间中的演化以及缺陷石墨烯结构的反应性的最新讨论。

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