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Etching of graphene in a Hydrogen-rich Atmosphere towards the Formation of Hydrocarbons in Circumstellar Clouds

机译:富含氢的大气中石墨烯的刻蚀对星云中碳氢化合物的形成

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摘要

We describe a mechanism that explains the formation of hydrocarbons and hydrocarbyls from hydrogenated graphene/graphite; hard C–C bonds are weakened and broken by the synergistic effect of chemisorbed hydrogen and high temperature vibrations. Total energies, optimized structures, and transition states are obtained from Density Functional Theory simulations. These values have been used to determine the Boltzman probability for a thermal fluctuation to overcome the kinetic barriers, yielding the time scale for an event to occur. This mechanism can be used to rationalize the possible routes for the creation of small hydrocarbons and hydrocarbyls from etched graphene/graphite in stellar regions.
机译:我们描述了解释氢化石墨烯/石墨形成烃和烃基的机理。化学吸附的氢和高温振动的协同作用会削弱和破坏硬质碳键。总能量,优化的结构和过渡态可从密度泛函理论仿真中获得。这些值已用于确定热波动克服动力学障碍的玻尔兹曼概率,从而得出事件发生的时间尺度。该机制可用于合理化从恒星区中的蚀刻石墨烯/石墨生成小烃和烃基的可能途径。

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