Golovin Kevin, Tuteja Anish
Department of Materials Science and Engineering, University of Michigan, Ann Arbor, MI 48109, USA.
Biointerfaces Institute, University of Michigan, Ann Arbor, MI 48109, USA.
Sci Adv. 2017 Sep 22;3(9):e1701617. doi: 10.1126/sciadv.1701617. eCollection 2017 Sep.
Ice accretion remains a costly, hazardous concern worldwide. Icephobic coatings reduce the adhesion between ice and a surface. However, only a handful of the icephobic systems reported to date reduce the ice adhesion sufficiently for the facile and passive removal of ice, such as under its own weight or by mild winds. Most of these icephobic surfaces have relied on sacrificial lubricants, which may be depleted over time, drastically raising the ice adhesion. In contrast, surfaces that use interfacial slippage to lower their adhesion to ice can remain icephobic indefinitely. However, the mechanism of interfacial slippage, as it relates to ice adhesion, is largely unexplored. We investigate how interfacial slippage reduces the ice adhesion of polymeric materials. We propose a new, universally applicable framework that may be used to predict the reduction in the adhesion of ice to surfaces exhibiting interfacial slippage. This framework allows one to rationally engender icephobicity in essentially any polymeric system, including common thermoplastics. Hence, we present several new, extremely icephobic systems fabricated from a wide range of materials, including everyday engineering plastics and sustainable, natural oils.
积冰在全球范围内仍然是一个成本高昂且危险的问题。憎冰涂层可降低冰与表面之间的附着力。然而,迄今为止报道的憎冰体系中,只有少数能够充分降低冰附着力,以便在冰自重或微风作用下轻松被动除冰。这些憎冰表面大多依赖牺牲性润滑剂,随着时间推移,润滑剂可能会耗尽,从而大幅提高冰附着力。相比之下,利用界面滑移来降低与冰附着力的表面可无限期保持憎冰性。然而,与冰附着力相关的界面滑移机制在很大程度上尚未得到探索。我们研究了界面滑移如何降低聚合物材料的冰附着力。我们提出了一个新的、普遍适用的框架,可用于预测冰与表现出界面滑移的表面之间附着力的降低情况。该框架使人们能够在基本上任何聚合物体系中合理地产生憎冰性,包括常见的热塑性塑料。因此,我们展示了几种由多种材料制成的新型超憎冰体系,包括日常工程塑料和可持续的天然油。