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Formation of Interstellar Complex Polycyclic Aromatic Hydrocarbons: Insights from Molecular Dynamics Simulations of Dehydrogenated Benzene

机译:形成间隙复合多环芳烃烃:脱氢苯分子动力学模拟的见解

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Small organic molecules are thought to provide building blocks for the formation of complex interstellar polycyclic aromatic hydrocarbons (PAHs). However, the underlying chemical mechanisms remain unclear, particularly concerning the role of interstellar dust. Using molecular dynamics, we simulate the chemical reaction between dehydrogenated benzene molecules in the gas phase or on the surface of an onion-like carbon nanoparticle (NP). The reaction leads to the formation of PAHs of complex structures. The size of the formed molecules is found to roughly increase with increasing temperature up to 800 K, and to be correlated with the level of dehydrogenation. Morphology analysis features the formation of large rings that contain up to 32 carbon atom at high temperature. Density functional theory (DFT) calculations are performed to search the fundamental energetic reaction pathways. The DFT results quantitatively confirm the correlation between the reactivity and the dehydrogenation level, and the formation of stable C-8 rings. Moreover, the nanostructures formed on the NP surface point to a possible layer-by-layer formation mechanism for interstellar fullerene and carbon onions.
机译:据认为,小有机分子为形成复杂的间隙多环芳烃(PAH)的构建块提供结构块。然而,潜在的化学机制仍然尚不清楚,特别是关于星际尘埃的作用。使用分子动力学,我们模拟气相中的脱氢苯分子之间的化学反应或在洋葱状碳纳米粒子(NP)的表面上。反应导致形成复合结构的PAHs。发现形成的分子的尺寸大致随温度升高至800 k的升高,并与脱氢水平相关。形态学分析具有在高温下形成最多32个碳原子的大环的形成。进行密度函数理论(DFT)计算以搜索基本的能量反应途径。 DFT结果定量地确认反应性和脱氢水平之间的相关性,以及稳定的C-8环的形成。此外,在NP表面上形成的纳米结构表达了全层间富勒烯和碳洋葱的可能的逐层形成机制。

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