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Fluorinated graphene provides long lasting ice inhibition in high humidity

机译:氟化石墨烯在高湿度下提供持久的冰抑制

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Ice formation on surfaces is a fascinating phenomenon with a major impact on a huge range of human activities from airplanes and shipping to wind mill parks, power transmission and telecommunication. A significant amount of work has been dedicated to the development of icephobic surfaces, often with the basis in superhydrophobicity. However, most surfaces investigated so far have not been very robust (an issue for operation in harsh and high humidity environments). Anti-icing strategies for practical applications in harsh environments have therefore mainly been related to the development of heatable coatings and/or mechanical removal or, in the case of airplanes, de-icing with glycol. Here we present a robust and lightweight anti-icing coating based on fluorinated graphene. The new coating delays ice formation for a striking 90 min at -15 degrees C up to 6 h and 45 min at -5 degrees C. All experiments were carried out at high humidity (50-55%). We also present first experiments of anti-icing on pure graphene. The very superior performance of the fluorinated graphene can be explained as a favourable combination of very low surface energy and nanoscale roughness. (C) 2018 Elsevier Ltd. All rights reserved.
机译:表面上的冰形成是一种令人着迷的现象,对飞机和运输到风机公园,电力传输和电信的大量人类活动产生了重大影响。大量工作致力于冰冻表面的发展,通常是超疏水性的​​基础。然而,到目前为止调查的大多数表面并不是非常强大的(在恶劣和高湿度环境中运行的问题)。因此,恶劣环境中的实际应用的防冰策略主要与可加热涂层和/或机械去除的开发有关,或者在飞机的情况下,用乙二醇去结冰。在这里,我们介绍了一种基于氟化石墨烯的鲁棒和轻巧的防糖衣涂层。新涂层在-15摄氏度下延迟90分钟的冰形成,高达6小时,45分钟,在-5℃下延迟45分钟。在高湿度(50-55%)下进行所有实验。我们还在纯石墨烯上展示了对抗冰的第一个试验。氟化石墨烯的非常优异的性能可以解释为非常低的表面能和纳米级粗糙度的良好组合。 (c)2018年elestvier有限公司保留所有权利。

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