Tang Yanfei, Grest Gary S, Cheng Shengfeng
Department of Physics, Center for Soft Matter and Biological Physics, and Macromolecules Innovation Institute, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.
Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.
J Chem Phys. 2019 Jun 14;150(22):224901. doi: 10.1063/1.5066035.
Large scale molecular dynamics simulations are used to study drying suspensions of a binary mixture of large and small particles in explicit and implicit solvents. The solvent is first modeled explicitly and then mapped to a uniform viscous medium by matching the diffusion coefficients and the pair correlation functions of the particles. "Small-on-top" stratification of the particles, with an enrichment of the smaller ones at the receding liquid-vapor interface during drying, is observed in both models under the same drying conditions. With the implicit solvent model, we are able to model much thicker films and study the effect of the initial film thickness on the final distribution of particles in the dry film. Our results show that the degree of stratification is controlled by the Péclet number defined using the initial film thickness as the characteristic length scale. When the Péclet numbers of large and small particles are much larger than 1, the degree of "small-on-top" stratification is first enhanced and then weakens as the Péclet numbers are increased.
大规模分子动力学模拟用于研究大小颗粒二元混合物在显式和隐式溶剂中的干燥悬浮液。首先对溶剂进行显式建模,然后通过匹配颗粒的扩散系数和对关联函数将其映射到均匀粘性介质中。在相同干燥条件下,两个模型均观察到颗粒的“小上大下”分层现象,即在干燥过程中较小颗粒在后退的液 - 气界面处富集。使用隐式溶剂模型,我们能够对更厚的薄膜进行建模,并研究初始薄膜厚度对干膜中颗粒最终分布的影响。我们的结果表明,分层程度由以初始薄膜厚度为特征长度尺度定义的佩克莱数控制。当大颗粒和小颗粒的佩克莱数远大于1时,“小上大下”分层程度随着佩克莱数的增加先增强后减弱。