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Formation of complex organic molecules in ice mantles: An ab initio molecular dynamics study

机译:冰幔中复杂有机分子的形成:从头算分子动力学研究

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We present a detailed simulation of a dust grain covered by a decamer of (CH_(3)OH)_(10)-ice-mantle, bombarded by an OH~(?)closed-shell molecule with kinetic energies from 10–22 eV. The chemical pathways are studied through Born-Oppenheimer (ab initio) molecular dynamics. The simulations show that methanol ice-mantles can be a key generator of complex organic molecules (COMs). We report the formation of COMs such as methylene glycol (CH_(2)(OH)_(2)) and the OCH_(2)OH radical, which have not been detected yet in the interstellar medium (ISM). We discuss the chemical formation of new species through the reaction of CH_(3)OH with the hydroxyl projectile. The dependence of the outcome on the kinetic energy of the projectile and the implications for the observation and detection of these molecules might explain why the methoxy radical (CH_(3)????) has been observed in a wider range of astrophysical environments than the hydroxymethyl (CH_(2)OH??) isomer. Because of the projectile kinetic energies required for these reactions to occur, we suggest that these processes are likely relevant in the production of COMs in photodissociation and shock regions produced by high-velocity jets and outflows from young stellar objects.
机译:我们提供了一个由(CH_(3)OH)_(10)-冰幔的十面体覆盖的尘埃颗粒的详细模拟,该颗粒被OH〜(?)闭壳分子以10-22 eV的动能轰击。通过Born-Oppenheimer(从头算)分子动力学研究化学途径。模拟表明,甲醇冰幔可能是复杂有机分子(COM)的关键生成器。我们报告了COMs的形成,例如亚甲基二醇(CH_(2)(OH)_(2))和OCH_(2)OH自由基,它们在星际介质(ISM)中尚未被检测到。我们讨论了通过CH_(3)OH与羟基射弹反应生成新物种的化学方法。结果对射弹动能的依赖性以及对这些分子的观察和检测的意义可能解释了为什么在比天体物理环境更广泛的范围内观察到甲氧基(CH_(3)????)羟甲基(CH_(2)OH′)异构体。由于发生这些反应所需的子弹动能,我们建议这些过程可能与高速射流和年轻恒星物体流出产生的光解离和激波区的COM产生有关。

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