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首页> 外文期刊>Physical Review, B. Condensed Matter >Molecular dynamics study of the fragmentation of silicon-doped fullerenes - art. no. 045405
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Molecular dynamics study of the fragmentation of silicon-doped fullerenes - art. no. 045405

机译:硅掺杂富勒烯断裂的分子动力学研究-艺术。没有。 045405

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摘要

Tight-binding molecular dynamics simulations, with a nonorthogonal basis set, are performed to study the fragmentation of carbon fullerenes doped with up to six silicon atoms. Both substitutional and adsorbed cases are considered. The fragmentation process is simulated starting from the equilibrium configuration in each case and imposing a high initial temperature to the atoms. Kinetic energy quickly converts into potential energy, so that the system oscillates for some picoseconds and eventually breaks up. The most probable first event for substituted fullerenes is the ejection of a C-2 molecule, another very frequent event being that one Si atom goes to an adsorbed position. Adsorbed Si clusters tend to desorb as a whole when they have four or more atoms, while the smaller ones tend to dissociate and sometimes interchange positions with the C atoms. These results are compared with experimental information from mass abundance spectroscopy and the products of photofragmentation. [References: 20]
机译:进行具有非正交基础集的紧密结合分子动力学模拟,以研究掺杂多达六个硅原子的碳富勒烯的断裂。考虑替代和吸附情况。在每种情况下均从平衡构型开始模拟碎片过程,并对原子施加较高的初始温度。动能迅速转换为势能,因此系统振荡了几皮秒,最终破裂。取代富勒烯最可能发生的第一事件是C-2分子的喷射,另一个非常常见的事件是一个Si原子到达吸附位置。当被吸附的硅团簇具有四个或更多原子时,它们倾向于整体上解吸,而较小的硅团簇则倾向于与C原子解离,有时交换位置。将这些结果与来自质谱仪和光碎产物的实验信息进行了比较。 [参考:20]

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