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首页> 外文期刊>The Journal of Chemical Physics >Postcollision multifragmentation in fullerene-surface impact: Microscopic insights via molecular dynamics simulations
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Postcollision multifragmentation in fullerene-surface impact: Microscopic insights via molecular dynamics simulations

机译:富勒烯表面碰撞中的碰撞后多碎片:通过分子动力学模拟的微观见解

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Postcollision multifragmentation which we have recently observed experimentally in C-60(-)-surface impact is the phenomenon of a delayed multiparticle breakup of a highly collisionally vibrationally excited large molecule/cluster (the precursor species) into several polyatomic fragments, after leaving the surface. In this paper, we show that the molecular dynamics simulations of near-grazing C-60 collisions with a gold surface at 300 eV impact energy (very similar to the experimental conditions) successfully reproduce the experimentally observed characteristics of the postcollision multifragmentation process. The calculated mass resolved kinetic energy distributions and the time dependent yield curves of the C-n fragments revealed a precursor mediated, velocity correlated, delayed fragmentation event along the outgoing trajectory, far away from the surface. Most of the large fragments (n >= 5) are formed within a time window of 2-20 ps after leaving the surface, corresponding to the vertical distances of 3-30 nm from the surface. Analysis of delay times and actual time duration for multifragmentation reveal that a large part can be described as simultaneous postcollision (delayed) multifragmentation events. The delayed nature of the event seems to be due to an early sequence of structural transformations of the precursor. Published by AIP Publishing.
机译:我们最近在C-60(-)-表面撞击中通过实验观察到的碰撞后多碎片现象是,在离开表面之后,高度碰撞振动激发的大分子/簇(前体物质)延迟分裂成多个多原子碎片的现象。 。在本文中,我们显示了在300 eV冲击能量(非常类似于实验条件)下与金表面的近掠C-60碰撞的分子动力学模拟成功地再现了碰撞后多碎片过程的实验观察特征。 C-n片段的质量分辨动能分布和时间依赖性屈服曲线表明,前体介导的,与速度相关的延迟片段化事件沿着流出的轨迹远离表面。大部分大碎片(n> = 5)在离开表面后的2-20 ps的时间窗口内形成,对应于距表面3-30 nm的垂直距离。对多碎片的延迟时间和实际持续时间的分析表明,很大一部分可以描述为同时发生的碰撞后(延迟)多碎片事件。事件的延迟性质似乎是由于前体结构转变的早期序列所致。由AIP Publishing发布。

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