论文标题

调整与Janus颗粒的含粒子流体界面的流动性和微观结构

Tuning the rheology and microstructure of particle-laden fluid interfaces with Janus particles

论文作者

Qiao, Yiming, Ma, Xiaolei, Liu, Zhengyang, Manno, Michael A., Keim, Nathan C., Cheng, Xiang

论文摘要

假设:载有颗粒的流体界面是许多天然和工程系统的核心组成部分。了解机械性能并提高此类接口的稳定性至关重要。 Janus颗粒是一类特殊的异质胶体,可以用作有效的表面活性剂来控制载有颗粒的流体界面的组装和界面流变性。实验:使用定制的界面应力休闲仪,我们探讨了Janus粒子添加剂对含粒子流体界面的界面流变和微观结构的影响。研究结果:我们发现,在PS胶体单层中添加少量的铂 - 聚苯乙烯(PT-PS)Janus颗粒(1:40数值比)可以导致表面模量增加的弹性均超过弹性的弹性,从而大大提高了界面的稳定性。界面流变学的这种急剧变化与每个Janus粒子周围的局部粒子簇的形成有关。我们通过考虑界面处的颗粒间相互作用来进一步解释局部粒子簇的起源。我们的实验揭示了局部粒子结构对粒子单层宏观流变行为的影响,并展示了一种调整含粒子流体界面的微结构和机械性能的新方法。

Hypothesis: Particle-laden fluid interfaces are the central component of many natural and engineering systems. Understanding the mechanical properties and improving the stability of such interfaces are of great practical importance. Janus particles, a special class of heterogeneous colloids, might be utilized as an effective surface-active agent to control the assembly and interfacial rheology of particle-laden fluid interfaces. Experiments: Using a custom-built interfacial stress rheometer, we explore the effect of Janus particle additives on the interfacial rheology and microscopic structure of particle-laden fluid interfaces. Findings: We find that the addition of a small amount of platinum-polystyrene (Pt-PS) Janus particles within a monolayer of PS colloids (1:40 number ratio) can lead to more than an order-of-magnitude increase in surface moduli with enhanced elasticity, which greatly improves the stability of the interface. This drastic change in interfacial rheology is associated with the formation of local particle clusters surrounding each Janus particle. We further explain the origin of local particle clusters by considering the interparticle interactions at the interface. Our experiments reveal the effect of local particle structures on the macroscopic rheological behaviors of particle monolayers and demonstrate a new way to tune the microstructure and mechanical properties of particle-laden fluid interfaces.

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