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在液体界面处的空间稳定胶体的界面流变学及其对 Pickering 乳液稳定性的影响。

Interfacial Rheology of Sterically Stabilized Colloids at Liquid Interfaces and Its Effect on the Stability of Pickering Emulsions.

机构信息

Department of Chemical Engineering, KU Leuven , Celestijnenlaan 200F, Leuven B-3001, Belgium.

Department of Materials, ETH Zürich , Vladimir-Prelog-Weg 5, Zürich CH-8093, Switzerland.

出版信息

Langmuir. 2017 May 2;33(17):4107-4118. doi: 10.1021/acs.langmuir.6b04365. Epub 2017 Apr 17.

Abstract

Particle-laden interfaces can be used to stabilize a variety of high-interface systems, from foams over emulsions to polymer blends. The relation between the particle interactions, the structure and rheology of the interface, and the stability of the system remains unclear. In the present work, we experimentally investigate how micron-sized, near-hard-sphere-like particles affect the mechanical properties of liquid interfaces. In particular, by comparing dried and undried samples, we investigate the effect of aggregation state on the properties of the particle-laden liquid interface and its relation to the stability of the corresponding Pickering emulsions. Partially aggregated suspensions give rise to a soft-solid-like response under shear, whereas for stable PMMA particulate layers a liquid-like behavior is observed. For interfacial creep-recovery measurements, we present an empirical method to correct for the combined effect of the subphase drag and the compliance of the double-wall ring geometry, which makes a significant contribution to the apparent elasticity of weak interfaces. We further demonstrate that both undried and dried PMMA particles can stabilize emulsions for months, dispelling the notion that particle aggregation, in bulk or at the interface, is required to create stable Pickering emulsions. Our results indicate that shear rheology is a sensitive probe of colloidal interactions but is not necessarily a predictor of the stability of interfaces, e.g., in quiescent Pickering emulsions, as in the latter the response to dilatational deformations can be of prime importance.

摘要

颗粒负载的界面可用于稳定各种高界面系统,从泡沫到乳液再到聚合物共混物。颗粒相互作用、界面结构和流变学以及系统稳定性之间的关系尚不清楚。在本工作中,我们通过实验研究了微米级、近似硬球状的颗粒如何影响液体界面的力学性能。特别是,通过比较干燥和未干燥的样品,我们研究了聚集状态对颗粒负载液体界面性能的影响,以及其与相应 Pickering 乳液稳定性的关系。部分聚集的悬浮液在剪切下表现出软固态响应,而对于稳定的 PMMA 颗粒层则表现出液体行为。对于界面蠕变-恢复测量,我们提出了一种经验方法来校正亚相阻力和双壁环几何结构的柔量的综合影响,这对弱界面的表观弹性有很大的贡献。我们进一步证明,未干燥和干燥的 PMMA 颗粒都可以稳定乳液数月,这消除了颗粒在本体或界面聚集是形成稳定 Pickering 乳液所必需的观点。我们的结果表明,剪切流变学是胶体相互作用的敏感探针,但不一定是界面稳定性的预测因子,例如在静止的 Pickering 乳液中,膨胀变形的响应可能是最重要的。

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