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Investigation of Copper and Tantalum atoms Diffusion in Polymers by ab initio Molecular Dynamics

机译:AB Initio分子动力学对聚合物铜和钽原子的调查

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Ab initio MD simulations were carried out to characterize the diffusion of Cu and Ta atoms/clusters inside a SiLK-like amorphous polymer. The diffusion coefficients of Cu and Ta atoms and their atomic clusters in linear amorphous and crosslinked polymers were calculated. The speed of a single Cu atom within the polymer suggests that Cu atoms diffuse in amorphous polymers by jumping or hopping between cavities inside polymers. The diffusion speed of Ta is much lower than that of Cu. This is not only due to its larger mass but also due to the chemical interactions between Ta and polymers. It was found that the degree of polymer crosslinking doesn't have strong effects on metal diffusion. Studies on the diffusion of metal clusters showed smaller diffusion coefficients with larger cluster size. This is the first effort to calculate the diffusion coefficients of metal atoms/clusters inside polymers using ab initio MD simulations; it provides a framework for metal-polymer diffusion investigations.
机译:进行AB初始MD模拟,以表征Cu和Ta原子/簇的扩散在丝状非晶聚合物内。计算Cu和Ta原子的扩散系数及其在线性无定形和交联聚合物中的原子簇。聚合物中单个Cu原子的速度表明Cu原子通过在聚合物内的空腔之间跳跃或跳跃来漫射在非晶态聚合物中。 Ta的扩散速度远低于Cu的扩散速度。这不仅是由于其较大的质量,而且由于TA和聚合物之间的化学相互作用。结果发现聚合物交联度对金属扩散没有强烈影响。关于金属簇的扩散的研究表明,具有较大簇大小的较小的扩散系数。这是第一次使用AB Initio MD模拟计算聚合物内金属原子/簇的扩散系数的努力;它为金属聚合物扩散研究提供了一种框架。

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