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基于声悬浮多组分液滴蒸发动力学的研究:蒸发引发的相变和冻结。

On evaporation dynamics of an acoustically levitated multicomponent droplet: Evaporation-triggered phase transition and freezing.

机构信息

Center for Combustion Energy, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, China.

Center for Combustion Energy, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, China.

出版信息

J Colloid Interface Sci. 2023 Oct 15;648:736-744. doi: 10.1016/j.jcis.2023.06.012. Epub 2023 Jun 12.

Abstract

HYPOTHESIS

Multi-component droplet evaporation has received significant attention in recent years due to the broad range of applications such as material science, environmental monitoring, and pharmaceuticals. The selective evaporation induced by the different physicochemical properties of components is expected to influence the concentration distributions and the separation of mixtures, thereby leading to rich interfacial phenomena and phase interactions.

EXPERIMENTS

A ternary mixture system containing hexadecane, ethanol, and diethyl ether is investigated in this study. The diethyl ether exhibits both surfactant-like and co-solvent properties. Systematic experiments were performed using acoustic levitation technique to achieve a contact-less evaporation condition. The evaporation dynamics and temperature information are acquired in the experiments, using high-speed photography and infrared thermography technologies.

FINDINGS

Three distinct stages, namely, 'Ouzo state', 'Janus state', and 'Encapsulating state', are identified for the evaporating ternary droplet in acoustic levitation. A self-sustaining periodic freezing & melting evaporation mode is reported. A theoretical model is developed to characterize the multi-stage evaporating behaviors. We demonstrate the capability to tune the evaporating behaviors by varying the initial droplet composition. This work provides a deeper understanding of the interfacial dynamics and phase transitions involved in multi-component droplets and proposes novel strategies for the design and control of droplet-based systems.

摘要

假设

由于材料科学、环境监测和制药等广泛的应用,多组分液滴蒸发近年来受到了极大的关注。不同物理化学性质的组分所引起的选择性蒸发有望影响混合物的浓度分布和分离,从而导致丰富的界面现象和相间相互作用。

实验

本研究中考察了含有十六烷、乙醇和乙醚的三元混合物体系。乙醚具有表面活性剂和共溶剂的性质。使用声悬浮技术进行了系统的实验,以实现无接触蒸发条件。实验中使用高速摄影和红外热成像技术获取蒸发动力学和温度信息。

发现

在声悬浮中,蒸发的三元液滴被识别为三个不同的阶段,即“Ouzo 状态”、“Janus 状态”和“包封状态”。报告了一种自维持的周期性冷冻-融化蒸发模式。开发了一个理论模型来描述多阶段蒸发行为。我们展示了通过改变初始液滴组成来调节蒸发行为的能力。这项工作深入了解了多组分液滴中的界面动力学和相变,并提出了设计和控制基于液滴的系统的新策略。

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