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首页> 外文期刊>RSC Advances >A superrepellent coating with dynamic fluorine chains for frosting suppression: effects of polarity, coalescence and ice nucleation free energy barrier
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A superrepellent coating with dynamic fluorine chains for frosting suppression: effects of polarity, coalescence and ice nucleation free energy barrier

机译:具有动态氟链的超疏水涂层,用于抑制结霜:极性,聚结和冰核无能势垒的影响

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摘要

Ice formation on surfaces is a serious issue in many different fields in terms of function, safety, and cost of operation in human life. Hydrophobic coating technology is one of the effective ways to prevent ice formation. Previous studies focused on the effects of surface structure and surface chemical modification on anti-icing ability. However, only a few studies have clarified a method to inhibit the initial formation of ice on surfaces; in addition, an effective mechanism for anti-frosting has not been identified as yet. Here, hydrophobic smooth surface coatings using three coupling agents with low surface energy and different molecular chain dynamics were fabricated. The surface roughnesses were lower than 1 nm. The fluorocarbon-based coatings delayed frost formation compared with the uncoated surface until -6 degrees C. We explored why the coating surface prevented frost formation and the effects of surface chemical modification on frost resistance from the viewpoint of heat exchange contact area during droplet coalescence, ice nucleation free energy barrier, polarity and polarizability of the coated surface.
机译:就功能,安全性和人类生命的操作成本而言,在许多不同领域中,表面结冰是一个严重的问题。疏水涂层技术是防止结冰的有效方法之一。先前的研究集中在表面结构和表面化学改性对防冰能力的影响上。但是,只有很少的研究阐明了一种抑制冰在表面最初形成的方法。另外,尚未确定有效的防霜机理。在此,使用具有低表面能和不同分子链动力学的三种偶联剂制备了疏水性光滑表面涂料。表面粗糙度小于1nm。与未涂覆的表面相比,碳氟化合物基的涂层延迟了霜的形成,直到-6摄氏度为止。我们从液滴聚结期间的热交换接触面积的角度探讨了涂层表面为何阻止霜的形成以及表面化学改性对防霜性的影响,冰成核的自由能垒,涂层表面的极性和极化性。

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