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利用多层水凝胶上的抗衡离子来调整冰成核和生长。

Tuning Ice Nucleation and Propagation with Counterions on Multilayer Hydrogels.

机构信息

Key Laboratory of Green Printing, Institute of Chemistry , Chinese Academy of Sciences , Beijing 100190 , China.

University of Chinese Academy of Sciences , Beijing 100049 , China.

出版信息

Langmuir. 2018 Oct 9;34(40):11986-11991. doi: 10.1021/acs.langmuir.8b02106. Epub 2018 Sep 24.

Abstract

Ice formation on solid surfaces includes heterogeneous ice nucleation and ice propagation processes. However, no study has been focused on tuning of both ice nucleation and ice propagation via a simple anti-icing coating method. In this work, we have prepared multilayer hydrogels based on simple layer-by-layer (LBL) deposition approach and discover the ion-specific effect on both ice nucleation and ice propagation. A large ice nucleation temperature window of 11 °C is controlled via changing different counterions; meanwhile, the differences in ice propagation time can be tuned up to 4 orders of magnitude. Through synergistically controlling of ice nucleation and propagation delay times, we can tune the freezing delay time of water droplets on multilayer hydrogel surfaces up to 3 orders of magnitude via changing various counterions. Considering the application requirements, these multilayer hydrogels are stable under different conditions and can be coated on various materials without destroying the existing surface. This new insight can inspire the design of anti-icing surfaces based on regulating both ice nucleation and ice propagation.

摘要

固体表面的冰形成包括异质成核和冰扩展过程。然而,目前尚无研究聚焦于通过简单的抗冰涂层方法同时调节成核和冰扩展。在这项工作中,我们使用简单的层层(LBL)沉积方法制备了多层水凝胶,并发现了离子对成核和冰扩展的特异性影响。通过改变不同的抗衡离子,控制了 11°C 的大冰核温度窗口;同时,冰扩展时间的差异可调节多达 4 个数量级。通过协同控制成核和冰扩展的延迟时间,我们可以通过改变各种抗衡离子,将多层水凝胶表面上水滴的冻结延迟时间调节多达 3 个数量级。考虑到应用要求,这些多层水凝胶在不同条件下稳定,并且可以在不破坏现有表面的情况下涂覆在各种材料上。这种新的见解可以启发基于调节成核和冰扩展的抗冰表面的设计。

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