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通过动态光散射同时分析二元液体混合物表面和本体的平衡涨落

Simultaneous Analysis of Equilibrium Fluctuations at the Surface and in the Bulk of a Binary Liquid Mixture by Dynamic Light Scattering.

作者信息

Koller Thomas M, Klein Tobias, Chen Jiaqi, Kalantar Ahmad, van der Laan Gerard P, Rausch Michael H, Fröba Andreas P

机构信息

Institute of Advanced Optical Technologies - Thermophysical Properties (AOT-TP), Department of Chemical and Biological Engineering (CBI) and Erlangen Graduate School in Advanced Optical Technologies (SAOT), Friedrich-Alexander-University Erlangen-Nürnberg (FAU) , Paul-Gordan-Straße 6, 91052 Erlangen, Germany.

Shell Global Solutions International B.V. , Grasweg 31, 1031 HW Amsterdam, The Netherlands.

出版信息

J Phys Chem B. 2017 Dec 7;121(48):10950-10956. doi: 10.1021/acs.jpcb.7b09770. Epub 2017 Nov 22.

Abstract

For the first time, we demonstrate that it is possible to simultaneously analyze microscopic fluctuations at the surface and in the bulk of a binary liquid mixture by dynamic light scattering in macroscopic thermodynamic equilibrium. For a model system containing n-octacosane and ethanol, three individual signals distinguishable in the time-resolved analysis of the scattered light intensity appear on different time scales. One oscillatory signal from surface fluctuations at the vapor-liquid interface in the short-time range and two exponential Rayleigh signals from fluctuations in temperature and concentration in the bulk of fluid in the long-time range could be associated with hydrodynamic modes. This microscopic information allows for a simultaneous determination of the macroscopic properties interfacial tension, kinematic viscosity, thermal diffusivity, and mutual diffusivity within a single experimental run. The presented approach represents a worthwhile strategy, for example, in the context of sensor development for an effective multiproperty determination of fluid systems.

摘要

首次,我们证明在宏观热力学平衡下通过动态光散射同时分析二元液体混合物表面和本体中的微观涨落是可行的。对于包含正二十八烷和乙醇的模型系统,在散射光强度的时间分辨分析中可区分出的三个独立信号出现在不同的时间尺度上。一个来自气液界面处表面涨落的短时间范围内的振荡信号,以及两个来自流体本体中温度和浓度涨落的长时间范围内的指数瑞利信号,可能与流体动力学模式相关。这种微观信息使得在单次实验运行中能够同时测定宏观性质界面张力、运动粘度、热扩散率和互扩散率。所提出的方法是一种有价值的策略,例如,在流体系统有效多性质测定的传感器开发背景下。

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