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糖基表面活性剂双连续微乳液中表面活性剂膜弯曲弹性的温度依赖性:准弹性散射研究。

Temperature dependence of the surfactant film bending elasticity in a bicontinuous sugar surfactant based microemulsion: a quasielastic scattering study.

机构信息

Institut für Chemie, Technische Universität Berlin, Strasse des 17.Juni 124, D-10623 Berlin, Germany.

出版信息

Phys Chem Chem Phys. 2011 Feb 28;13(8):3092-9. doi: 10.1039/c0cp02044c. Epub 2010 Dec 10.

Abstract

Currently, the design of microemulsions is focussed on the formulation of environmentally compatible systems formed by non-harmful amphiphiles and oils. The use of sugar-based surfactants allows the design of microemulsions where, instead of the temperature, the addition of short- or medium-chain alcohols tunes the curvature of the amphiphilic interface. In this work, the resulting temperature stability of a sugar surfactant and rapeseed methyl ester based bicontinuous microemulsion is exploited to study the influence of temperature variations on the bending elastic constant κ. Quasi-elastic scattering of light and neutrons is used to separate long-range collective motions and local thermally excited undulations of the interface. κ in units of kT is found to be independent of temperature over a wide range.

摘要

目前,微乳液的设计侧重于由非有害的两亲物和油形成的环境相容体系的配方。糖基表面活性剂的使用允许设计微乳液,其中不是温度,而是短链或中链醇的添加来调节两亲界面的曲率。在这项工作中,利用糖表面活性剂和菜籽油甲酯基双连续微乳液的所得温度稳定性来研究温度变化对弯曲弹性常数κ的影响。光和中子的准弹性散射用于分离长程集体运动和界面的局部热激发波动。以 kT 为单位的 κ 被发现可在很宽的温度范围内保持不变。

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