Department of Physics, University of Surrey, Guildford, Surrey GU2 7XH, UK.
Soft Matter. 2017 Oct 11;13(39):6969-6980. doi: 10.1039/c7sm01267e.
When films are deposited from mixtures of colloidal particles of two different sizes, a diverse range of functional structures can result. One structure of particular interest is a stratified film in which the top surface layer has a composition different than in the interior. Here, we explore the conditions under which a stratified layer of small particles develops spontaneously in a colloidal film that is cast from a binary mixture of small and large polymer particles that are suspended in water. A recent model, which considers the cross-interaction between the large and small particles (Zhou et al., Phys. Rev. Lett., 2017, 118, 108002), predicts that stratification will develop from dilute binary mixtures when the particle size ratio (α), initial volume fraction of small particles (ϕ), and Péclet number are high. In experiments and Langevin dynamics simulations, we systematically vary α and ϕ in both dilute and concentrated suspensions. We find that stratified films develop when ϕ is increased, which is in agreement with the model. In dilute suspensions, there is reasonable agreement between the experiments and the Zhou et al.
In concentrated suspensions, stratification occurs in experiments only for the higher size ratio α = 7. Simulations using a high Péclet number, additionally find stratification with α = 2, when ϕ is high enough. Our results provide a quantitative understanding of the conditions under which stratified colloidal films assemble. Our research has relevance for the design of coatings with targeted optical and mechanical properties at their surface.
当胶体颗粒的混合物被沉积下来时,会产生多种功能结构。其中一种特别有趣的结构是分层膜,其顶层的组成与内部不同。在这里,我们探讨了在胶体膜从大小不同的聚合物胶体颗粒的二元混合物中浇铸时,小颗粒的分层层会自发形成的条件。最近的一个模型(Zhou 等人,《物理评论快报》,2017 年,118 卷,108002)考虑了大颗粒和小颗粒之间的交叉相互作用,预测当颗粒尺寸比(α)、小颗粒的初始体积分数(φ)和 Peclet 数较高时,分层将从稀二元混合物中发展出来。在实验和朗之万动力学模拟中,我们系统地改变了稀释和浓缩悬浮液中的α和φ。我们发现当φ增加时,分层膜会形成,这与模型一致。在稀悬浮液中,实验与 Zhou 等人的模型之间存在合理的一致性。
在浓悬浮液中,仅当尺寸比α=7 较高时,实验中才会出现分层。当 Peclet 数较高时,使用高 Peclet 数的模拟也会发现,当φ足够高时,分层会在α=2 时出现。我们的结果提供了对分层胶体膜组装条件的定量理解。我们的研究对于设计具有目标光学和机械性能的涂层具有重要意义。