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从黏附性乳剂双层膜的稳定性到通透性。

From stability to permeability of adhesive emulsion bilayers.

机构信息

UPMC Universite Paris 06, CNRS UMR 7195, ESPCI ParisTech, 10 rue Vauquelin, 75231 Paris, France.

出版信息

Langmuir. 2012 Apr 17;28(15):6291-8. doi: 10.1021/la3003349. Epub 2012 Apr 4.

Abstract

Water drops dispersed in chloroform and stabilized with phospholipids become adhesive if a bad solvent for lipids, such as silicone oil, is added to the continuous phase. In this way, two sticking drops are separated by a bilayer of phospholipids. By using microfluidic technologies, we probe the stability and properties of such membranes likewise encountered in foams or vesicles. We first establish the stability diagram of adhering drop pairs as a function of the continuous phase composition. We found two regimes of destabilization of the bilayer. The first one concerns a competition between the dynamics of adhesion and the transport of surfactants toward the interfaces that leads to a dilute surfactant coverage. The second one corresponds to a dense surface coverage where the lifetime distribution of the bilayer exponentially decreases as a signature of a nucleation process. In the stable regime, we observe the propagation of adhesion among a concentrated collection of drops. This is another remarkable illustration of the suction consequence when two close deformable objects are pulled apart. Moreover, the present experimental strategy offers a novel way to study the phase diagrams of bilayers from a single phospholipid to a mixture of phospholipids. Indeed, we detect phase transitions at a liquid-liquid interface that are ruled by the amount of bad solvent. Finally, we probe the transport of water molecules through the bilayer and show that its permeability is linked to the adhesion energy that reflects its fluidity.

摘要

如果将一种对脂质(如硅油)不好的溶剂添加到连续相中,分散在氯仿中并用磷脂稳定的水滴会变得具有粘性。这样,两个粘性的液滴就被一层磷脂隔开了。通过使用微流控技术,我们同样可以探测到泡沫或囊泡中遇到的这种膜的稳定性和特性。我们首先建立了粘附液滴对作为连续相组成函数的稳定性图。我们发现双层膜有两种失稳机制。第一种机制涉及到粘附动力学和表面活性剂向界面运输之间的竞争,导致表面活性剂覆盖度稀疏。第二种机制对应于密集的表面覆盖,其中双层膜的寿命分布呈指数下降,这是成核过程的特征。在稳定的区域,我们观察到在集中的液滴群之间发生粘附传播。这是两个接近的可变形物体被拉开时吸力作用的另一个显著例证。此外,本实验策略提供了一种从单一磷脂到磷脂混合物来研究双层相图的新方法。实际上,我们在液-液界面检测到由不良溶剂量控制的相变。最后,我们探测了水分子通过双层膜的传输,并表明其渗透性与其粘附能相关,这反映了其流动性。

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