论文标题

氧化铝纳米颗粒的烧结:原子间电位,分子动力学模拟和数据分析的比较

Sintering of Alumina Nanoparticles: Comparison of Interatomic Potentials, Molecular Dynamics Simulations, and Data Analysis

论文作者

Roy, Shyamal, Prakash, Arun, Sandfeld, Stefan

论文摘要

从基础研究和工业应用的角度来看,氧化铝纳米颗粒的烧结既有意义。原子模拟是量身定制的,用于理解和预测时间和温度依赖性的烧结行为。但是,这种分析的质量和可预测性在很大程度上取决于基本的原子间电位的性能。在这项工作中,我们研究和基准了四个经验的原子间潜力,并根据文献中的实验和密度功能理论数据讨论所得的特性和缺点。然后,具有不同起源和制剂的电势被用于分子动力学模拟中,以对烧结过程进行系统研究。为了分析结果,我们开发了许多量身定制的数据分析方法,这些方法能够表征和量化烧结过程。随后,批判性地讨论了潜力预测的烧结行为的差异。最后,我们通过提供有关电势性能差异的解释以及分子动力学烧结模拟氧化铝的差异的结论。

Sintering of alumina nanoparticles is of interest both from the view of fundamental research as well as for industrial applications. Atomistic simulations are tailor-made for understanding and predicting the time- and temperature-dependent sintering behaviour. However, the quality and predictability of such analysis is strongly dependent on the performance of the underlying interatomic potentials. In this work, we investigate and benchmark four empirical interatomic potentials and discuss the resulting properties and drawbacks based on experimental and density functional theory data from the literature. The potentials, which have different origins and formulations, are then used in molecular dynamics simulations to perform a systematic study of the sintering process. To analyse the results, we develop a number of tailored data analysis approaches that are able to characterise and quantify the sintering process. Subsequently, the disparities in the sintering behaviour predicted by the potentials are critically discussed. Finally, we conclude by providing explanations for the differences in performance of the potentials, together with recommendations for molecular dynamics sintering simulations of alumina.

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