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厚度相关的相转变驱动胶束自由膜中纳米脊到台面不稳定性。

Thickness-Dependent Phase Transition Drives Nanoridge-to-Mesa Instability in Micellar Freestanding Films.

机构信息

Department of Chemical Engineering , University of Illinois at Chicago , Chicago , Illinois 60607 , United States.

出版信息

Langmuir. 2018 Jul 3;34(26):7922-7931. doi: 10.1021/acs.langmuir.8b01010. Epub 2018 Jun 20.

Abstract

Understanding fluxes and instabilities within freestanding ultrathin films is necessary for a better understanding of, and control over, the stability and lifetime of foams and emulsions. In micellar foam films, confinement-induced layering of micelles leads to stepwise thinning or stratification that occurs by the expansion of thinner, darker domains. Often, because of a nanoridge-to-mesa instability, one or more brighter white spots or "mesas" appear at the circular moving front between thinner domains and the thicker (less dark) surrounding film. Previous studies assume that the instability and the appearance of white spots are similar to the capillarity-driven Rayleigh instability that leads to the breakup of a coherent liquid jet. Using the IDIOM (interferometry digital imaging optical microscopy) protocols we recently developed, we characterize the nanoridge-to-mesa instability with exquisite spatiotemporal resolution (thickness <1 nm, time <1 ms). The instability could be classified as a Rayleigh instability if a similar sequence of thick and thin undulations is visualized around the expanding domains. However, quantitative analysis reveals that only mesas grow in size after the instability, whereas the rest of the nanoridge preserves its shape. By analogy to the phase separation into compositionally distinct regions, we show that the spontaneous nucleation of thicker mesas in stratifying films is a phase transition driven by the oscillatory nature of the free-energy functional.

摘要

理解自由站立的超薄薄膜中的流量和不稳定性对于更好地理解和控制泡沫和乳液的稳定性和寿命是必要的。在胶束泡沫膜中,胶束的受限分层导致逐步变薄或分层,这是通过较薄、较暗区域的扩展发生的。通常,由于纳米脊到台面不稳定性,在较薄区域和较厚(较暗)周围膜之间的圆形移动前沿处会出现一个或多个较亮的白色斑点或“台面”。先前的研究假设不稳定性和白色斑点的出现类似于毛细驱动的瑞利不稳定性,这导致连贯液体射流的破裂。使用我们最近开发的 IDIOM(干涉数字成像光学显微镜)协议,我们以精湛的时空分辨率(厚度<1nm,时间<1ms)表征纳米脊到台面不稳定性。如果在扩展区域周围可视化出类似的厚和薄波动的序列,则可以将不稳定性分类为瑞利不稳定性。然而,定量分析表明,只有台面在不稳定性之后才会增大尺寸,而其余的纳米脊则保持其形状。通过类比于组成上不同区域的相分离,我们表明,在分层膜中较厚台面的自发成核是由自由能函数的振荡性质驱动的相变。

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