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Development of anti-icing materials by chemical tailoring of hydrophobic textured metallic surfaces

机译:通过化学修饰疏水质感金属表面开发防冰材料

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Ice on surfaces can have dramatic consequences for human activities. Over the last decades, the design of new materials with anti-icing properties has generated significant research efforts for the prevention of ice accretion. Here we investigate water freezing temperatures on untreated and negatively charged hydrophobic stainless steel surfaces and use these temperatures to evaluate icephobicity. Supercooled water microdroplets are deposited and undergo a slow controlled cooling until spontaneous freezing occurs. Textured hydrophobic stainless steel surfaces functionalized with anionic polyelectrolytes brushes display unexpectedly lower freezing temperatures, at least 7 °C lower than polished untreated steel. On the basis of the entropy reduction of the crystalline phase near a charged solid surface, we used a modification of the classical heterogeneous nucleation theory to explain the observed freezing temperatures lessening. Our results could help the design of new composite materials that more efficiently prevent ice formation.
机译:表面上的冰可能对人类活动产生重大影响。在过去的几十年中,具有防冰性能的新材料的设计已为防止积冰产生了重要的研究成果。在这里,我们研究未经处理且带负电荷的疏水性不锈钢表面的水冻结温度,并使用这些温度来评估其疏冰性。沉积过冷的水微滴并进行缓慢的控制冷却,直到发生自发冻结。用阴离子聚电解质刷功能化的疏水化疏水不锈钢表面显示出意想不到的较低的冷冻温度,比未处理的抛光钢低至少7°C。基于带电固体表面附近结晶相的熵减少,我们使用经典异质成核理论的一种改进来解释观察到的凝固温度降低。我们的结果可以帮助设计更有效地防止结冰的新型复合材料。

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