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Simple analytical model of nanocluster coalescence for porous thin film design

机译:用于多孔薄膜设计的纳米簇聚结的简单分析模型

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We propose an approach to coalescence studies that encompasses the random nature of nanoparticle deposition, which results in a statistical cancellation of individual sintering mechanisms. We present a rigorous, yet simple and intuitive, analytical method that describes the average coalescence behaviour of nanoparticles, regardless of constituent element or crystallinity, emphasizing only the predominant coalescence dependencies on temperature and size-dependent nanoparticle melting points. We assessed our model using molecular dynamics (MD) computer simulations of dissimilar systems, and found remarkable agreement between its predictions and the MD results. Its simplicity makes our model a suitable starting point for the development of a meso-scale simulation technique that can describe the growth of porous films and allow for their bespoke design.
机译:我们提出了一种融合研究的方法,该方法涵盖了纳米颗粒沉积的随机性,从而导致单个烧结机制的统计抵消。我们提出了一种严格的,但简单而直观的分析方法,该方法描述了纳米粒子的平均聚结行为,而与构成元素或结晶度无关,仅强调了主要的聚结依赖于温度和与尺寸有关的纳米粒子的熔点。我们使用分子动力学(MD)对不同系统的计算机模拟来评估模型,并发现其预测与MD结果之间的显着一致性。它的简单性使我们的模型成为开发中尺度模拟技术的合适起点,该技术可以描述多孔膜的生长并允许定制设计。

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