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Numerical Investigation of Ultrashort Laser-Ablative Synthesis of Metal Nanoparticles in Liquids Using the Atomistic-Continuum Model

机译:原子连续模型超短波激光烧蚀合成液体中金属纳米颗粒的数值研究

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摘要

We present a framework based on the atomistic continuum model, combining the Molecular Dynamics (MD) and Two Temperature Model (TTM) approaches, to characterize the growth of metal nanoparticles (NPs) under ultrashort laser ablation from a solid target in water ambient. The model is capable of addressing the kinetics of fast non-equilibrium laser-induced phase transition processes at atomic resolution, while in continuum it accounts for the effect of free carriers, playing a determinant role during short laser pulse interaction processes with metals. The results of our simulations clarify possible mechanisms, which can be responsible for the observed experimental data, including the presence of two populations of NPs, having a small (5–15 nm) and larger (tens of nm) mean size. The formed NPs are of importance for a variety of applications in energy, catalysis and healthcare.
机译:我们提出了一个基于原子连续体模型的框架,结合了分子动力学(MD)和两种温度模型(TTM)方法,以表征超短激光烧蚀过程中金属纳米颗粒(NPs)在水环境中从固体靶标的生长。该模型能够以原子分辨率解​​决快速非平衡激光诱导的相变过程的动力学问题,同时连续地考虑了自由载流子的影响,在与金属的短激光脉冲相互作用过程中起着决定性的作用。我们的模拟结果阐明了可能的机制,这些机制可能是观察到的实验数据的原因,包括存在两个平均大小较小(5-15 nm)和较大(数十nm)的NP。形成的NP对于能源,催化和医疗保健中的各种应用都很重要。

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