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Photothermal nanobubble nucleation on a plasmonic nanoparticle: A 3D lattice Boltzmann simulation

机译:等离子体纳米粒子上的光热纳米气泡成核:3D晶格玻尔兹曼模拟

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Nanobubble nucleation by plasmonic heating on a gold spherical nanoparticle under laser illumination is numerically investigated by a 3D liquid-vapor phase change lattice Boltzmann (LB) method. A volumetric heat source is incorporated to the evolution equation of temperature distribution function to simulate photothermal energy conversion effect in a plasmonic gold spherical nanoparticle induced by surface plasma resonance under laser illumination. A halfway bounce-back conjugate boundary condition on nanoparticle/liquid interface for LB simulation, with interfacial thermal resistance taken into consideration, is derived. It is confirmed that nanobubble nucleates on a laser heated hydrophilic gold spherical nanoparticle in a core-shell mode under normal gravity condition. To simulate nanobubble nucleation on a plasmonic nanoparticle in a spherical cap mode, an extraordinary (fictitious) hyper gravity environment would have to be imposed. Effects of nanoparticle surface's wettability, nanoparticle-liquid interfacial thermal resistance, and nanoparticle's diameter on nanobubble nucleation under normal gravity are investigated. The size of the nanoparticle is found to have non-monotonic effects on the threshold laser fluence of nanobubble nucleation, with the 60 nm gold nanoparticle having the lowest threshold laser fluence for nucleation. This finding is in agreement with existing experimental results. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过3D液相-液相变格子Boltzmann(LB)方法对金球形纳米粒子在激光照射下通过等离子体激元加热进行的纳米气泡成核进行了数值研究。将体积热源结合到温度分布函数的演化方程中,以模拟在激光照射下表面等离子体共振诱导的等离子体金球形纳米粒子中的光热能转换效应。推导了考虑界面热阻的纳米粒子/液体界面的半弹回共轭边界条件。可以确定的是,纳米气泡在正常重力条件下以核-壳模式在激光加热的亲水性金球形纳米颗粒上成核。为了在球形帽模式下在等离子体纳米粒子上模拟纳米气泡成核,必须施加非同寻常的(虚拟)超重力环境。研究了在正常重力下纳米颗粒表面的可湿性,纳米颗粒-液体界面的热阻以及纳米颗粒直径对纳米气泡成核的影响。发现纳米颗粒的尺寸对纳米气泡成核的阈值激光通量具有非单调影响,其中60nm金纳米颗粒具有最低的用于成核的阈值激光通量。这一发现与现有的实验结果一致。 (C)2019 Elsevier Ltd.保留所有权利。

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