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电冷冻的基本界面机制。

Fundamental interfacial mechanisms underlying electrofreezing.

机构信息

Texas Materials Institute & Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX 78712, United States.

Texas Materials Institute & Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX 78712, United States.

出版信息

Adv Colloid Interface Sci. 2018 Jan;251:26-43. doi: 10.1016/j.cis.2017.12.003. Epub 2017 Dec 8.

Abstract

This article reviews the fundamental interfacial mechanisms underlying electrofreezing (promotion of ice nucleation via the application of an electric field). Electrofreezing has been an active research topic for many decades, with applications in food preservation, cryopreservation, cryogenics and ice formation. There is substantial literature detailing experimental and simulations-based studies, which aim to understand the complex mechanisms underlying accelerated ice nucleation in the presence of electric fields and electrical charge. This work provides a critical review of all such studies. It is noted that application-focused studies of electrofreezing are excluded from this review; such studies have been previously reviewed in literature. This review focuses only on fundamental studies, which analyze the physical mechanisms underlying electrofreezing. Topics reviewed include experimental studies on electrofreezing (DC and AC electric fields), pyroelectricity-based control of freezing, molecular dynamics simulations of electrofreezing, and thermodynamics-based explanations of electrofreezing. Overall, it is seen that electrofreezing can enable disruptive advancements in the control of liquid-to-solid phase change, and that our current understanding of the underlying mechanisms can be significantly improved through further studies of various interfacial effects coming into play.

摘要

本文回顾了电冻结(通过施加电场促进冰核形成)的基本界面机制。几十年来,电冻结一直是一个活跃的研究课题,其应用包括食品保鲜、冷冻保存、低温学和冰形成。有大量文献详细描述了旨在理解电场和电荷存在下加速冰核形成的复杂机制的实验和模拟研究。这项工作对所有这些研究进行了批判性的回顾。需要指出的是,本文不包括针对电冻结的应用为重点的研究;此类研究以前在文献中已经进行过综述。本综述仅关注分析电冻结基本机制的基础研究。综述的主题包括电冻结的实验研究(直流和交流电场)、基于热电效应的冻结控制、电冻结的分子动力学模拟以及电冻结的热力学解释。总的来说,电冻结可以实现对液-固相变控制的颠覆性进展,并且通过进一步研究各种界面效应的作用,我们对潜在机制的现有理解可以得到显著提高。

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