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胶体液滴中的蒸发和颗粒组装建模。

Modeling Evaporation and Particle Assembly in Colloidal Droplets.

机构信息

Department of Mechanical Engineering, Binghamton University , Binghamton, New York 13902, United States.

出版信息

Langmuir. 2017 Jun 13;33(23):5734-5744. doi: 10.1021/acs.langmuir.7b00284. Epub 2017 Jun 5.

Abstract

Evaporation-induced assembly of nanoparticles in a drying droplet is of great importance in many engineering applications, including printing, coating, and thin film processing. The investigation of particle dynamics in evaporating droplets can provide fundamental hydrodynamic insight for revealing the processing-structure relationship in the particle self-organization induced by solvent evaporation. We develop a free-energy-based multiphase lattice Boltzmann method coupled with Brownian dynamics to simulate evaporating colloidal droplets on solid substrates with specified wetting properties. The influence of interface-bound nanoparticles on the surface tension and evaporation of a flat liquid-vapor interface is first quantified. The results indicate that the particles at the interface reduce surface tension and enhance evaporation flux. For evaporating particle-covered droplets on substrates with different wetting properties, we characterize the increase of evaporate rate via measuring droplet volume. We find that droplet evaporation is determined by the number density and circumferential distribution of interfacial particles. We further correlate particle dynamics and assembly to the evaporation-induced convection in the bulk and on the surface of droplet. Finally, we observe distinct final deposits from evaporating colloidal droplets with bulk-dispersed and interface-bound particles. In addition, the deposit pattern is also influenced by the equilibrium contact angle of droplet.

摘要

在许多工程应用中,包括印刷、涂层和薄膜处理,干燥液滴中纳米颗粒的蒸发诱导组装具有重要意义。研究蒸发液滴中的颗粒动力学可以为揭示溶剂蒸发诱导的颗粒自组织过程中的加工-结构关系提供基本的流体动力见解。我们开发了一种基于自由能的多相格子玻尔兹曼方法,结合布朗动力学,模拟具有指定润湿性的固体基底上的蒸发胶体液滴。首先,定量研究了界面结合纳米颗粒对平液-气界面表面张力和蒸发的影响。结果表明,界面处的颗粒降低了表面张力并增强了蒸发通量。对于具有不同润湿性的基底上的蒸发颗粒覆盖液滴,我们通过测量液滴体积来表征蒸发速率的增加。我们发现,液滴蒸发由界面颗粒的数密度和周向分布决定。我们进一步将颗粒动力学和组装与体相和液滴表面的蒸发诱导对流相关联。最后,我们观察到从具有体分散和界面结合颗粒的蒸发胶体液滴中得到的明显的最终沉积物。此外,沉积物图案也受到液滴平衡接触角的影响。

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