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流体-流体界面处的纳米椭球体:表面电荷对吸附、屈曲和乳化的影响。

Nano ellipsoids at the fluid-fluid interface: effect of surface charge on adsorption, buckling and emulsification.

作者信息

Dugyala Venkateshwar Rao, Anjali Thiriveni G, Upendar Siliveru, Mani Ethayaraja, Basavaraj Madivala G

机构信息

Polymer Engineering and Colloid Science Lab (PECS Lab), Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai-600036, India.

出版信息

Faraday Discuss. 2016;186:419-34. doi: 10.1039/c5fd00136f.

Abstract

In this contribution, we discuss the role of surface charge on the adsorption of shape anisotropic particles to fluid-fluid interfaces in the context of their application in particle-stabilized emulsions. Starting with a pendent aqueous drop containing nano-ellipsoids of known surface charge density suspended in an oil medium, we study the kinetics of adsorption of the ellipsoids to the water-decane interface using pendant drop tensiometry. The interfacial tension of the drop is recorded as a function of time by analyzing the shape of the drop. We show that the particles that are weakly charged readily adsorb to the water-decane interface and the adsorption behavior is influenced by the particle surface charge density. Furthermore, as the area available for the particles deposited at the interface is reduced, the interface populated with self-assembled ellipsoids shows wrinkles indicating buckling of the particle-laden interface under compression. However, the buckling is not observed if nano-ellipsoids are highly charged confirming that the particles do not adsorb to the interface when they are highly charged. This suggests that in several examples where the particles at interfaces concept is exploited, the repulsive energy barrier due to the particle surface charge plays a key role in the adsorption of particles to the interfaces. However, once the particles are adsorbed, the interfacial properties of the monolayer depend on the particle-particle interactions. Thus a combination of these interactions determines the concentration of particles at the interface, their microstructure and interfacial properties. The effect of these interactions on the quantity and size of the emulsion drops stabilized by ellipsoidal particles is also explored.

摘要

在本论文中,我们讨论了表面电荷在形状各向异性颗粒吸附到液 - 液界面过程中的作用,这一过程与它们在颗粒稳定乳液中的应用相关。从一个悬垂在油介质中的含有已知表面电荷密度纳米椭球体的水滴开始,我们使用悬滴张力测量法研究椭球体吸附到水 - 癸烷界面的动力学。通过分析液滴的形状,记录液滴的界面张力随时间的变化。我们发现,弱带电的颗粒很容易吸附到水 - 癸烷界面,并且吸附行为受颗粒表面电荷密度的影响。此外,随着沉积在界面上的颗粒可用面积减小,充满自组装椭球体的界面会出现皱纹,这表明负载颗粒的界面在压缩下发生了屈曲。然而,如果纳米椭球体带高电荷,则不会观察到屈曲现象,这证实了颗粒在高电荷状态下不会吸附到界面。这表明,在几个利用界面颗粒概念的例子中,颗粒表面电荷产生的排斥能垒在颗粒吸附到界面的过程中起着关键作用。然而,一旦颗粒被吸附,单层的界面性质就取决于颗粒 - 颗粒相互作用。因此,这些相互作用的组合决定了界面处颗粒的浓度、它们的微观结构和界面性质。我们还探讨了这些相互作用对由椭球体颗粒稳定的乳液滴数量和尺寸的影响。

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