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水合介导的混合疏水/亲水纳米液滴界面的界面转变。

Hydration mediated interfacial transitions on mixed hydrophobic/hydrophilic nanodroplet interfaces.

机构信息

Laboratory for fundamental BioPhotonics (LBP), Institute of Bioengineering (IBI), and Institute of Materials Science (IMX), School of Engineering (STI), and Lausanne Centre for Ultrafast Science (LACUS), École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

出版信息

J Chem Phys. 2018 Dec 21;149(23):234704. doi: 10.1063/1.5035161.

DOI:10.1063/1.5035161
PMID:30579299
Abstract

Interfacial phase transitions are of fundamental importance for climate, industry, and biological processes. In this work, we observe a hydration mediated surface transition in supercooled oil nanodroplets in aqueous solutions using second harmonic and sum frequency scattering techniques. Hexadecane nanodroplets dispersed in water freeze at a temperature of ∼15 °C below the melting point of the bulk alkane liquid. Addition of a trimethylammonium bromide (CTA) type surfactant with chain length equal to or longer than that of the alkane causes the bulk oil droplet freezing transition to be preceded by a structural interfacial transition that involves water, oil, and the surfactant. Upon cooling, the water loses some of its orientational order with respect to the surface normal, presumably by reorienting more parallel to the oil interface. This is followed by the surface oil and surfactant alkyl chains losing some of their flexibility, and this chain stretching induces alkyl chain ordering in the bulk of the alkane phase, which is then followed by the bulk transition occurring at a 3 °C lower temperature. This behavior is reminiscent of surface freezing observed in planar tertiary alkane/surfactant/water systems but differs distinctively in that it appears to be induced by the interfacial water and requires only a very small amount of surfactant.

摘要

界面相变对于气候、工业和生物过程都具有重要的基础意义。在这项工作中,我们使用二次谐波和和频散射技术观察到超冷油纳米液滴在水溶液中存在水合介导的表面转变。十六烷纳米液滴在水中的分散体在低于块状烷烃液体熔点约 15°C 的温度下冻结。添加链长等于或长于烷烃的三甲基溴化铵(CTA)型表面活性剂会导致块状油滴的冻结转变先于涉及水、油和表面活性剂的结构界面转变。冷却时,水失去了一些相对于表面法向的取向序,可能是通过更平行于油界面重新取向。这之后是表面油和表面活性剂烷基链失去一些柔韧性,这种链拉伸诱导烷烃相的体相中的烷基链有序化,然后是在低 3°C 的温度下发生体相转变。这种行为类似于在平面叔烷烃/表面活性剂/水体系中观察到的表面冻结,但明显不同的是,它似乎是由界面水诱导的,并且只需要非常少量的表面活性剂。

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