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老化对模型液体注入表面结构和性能的影响。

Effect of Ageing on the Structure and Properties of Model Liquid-Infused Surfaces.

作者信息

Goodband Sarah J, Armstrong Steven, Kusumaatmaja Halim, Voı Tchovsky Kislon

机构信息

Department of Physics, Durham University, Durham DH1 3LE, U.K.

Smart Materials & Surfaces Laboratory, Faculty of Engineering & Environment, Northumbria University, Newcastle Upon Tyne NE18ST, U.K.

出版信息

Langmuir. 2020 Apr 7;36(13):3461-3470. doi: 10.1021/acs.langmuir.0c00059. Epub 2020 Mar 24.

Abstract

Liquid-infused surfaces (LISs) exhibit unique properties that make them ideal candidates for a wide range of applications, from antifouling and anti-icing coatings to self-healing surfaces and controlled wetting. However, when exposed to realistic environmental conditions, LISs tend to age and progressively lose their desirable properties, potentially compromising their application. The associated ageing mechanisms are still poorly understood, and results reflecting real-life applications are scarce. Here, we track the ageing of a model LIS composed of glass surfaces functionalized with hydrophobic nanoparticles and infused with silicone oil. The LISs are fully submerged in aqueous solutions and exposed to acoustic pressure waves for set time intervals. The ageing is monitored by periodic measurements of the LIS's wetting properties. We also track the changes to the LIS's nanoscale structure. We find that the LISs rapidly lose their slippery properties because of a combination of oil loss, smoothing of the nanoporous functional layer, and substrate degradation when directly exposed to the solution. The oil loss is consistent with water microdroplets entering the oil layer and displacing oil away from the surface. These mechanisms are general and could play a role in the ageing of most LISs.

摘要

注液表面(LISs)具有独特的特性,使其成为从防污和防冰涂层到自修复表面及可控润湿等广泛应用的理想候选材料。然而,当暴露于实际环境条件下时,注液表面往往会老化并逐渐失去其理想性能,这可能会影响其应用。相关的老化机制仍知之甚少,反映实际应用的结果也很稀少。在此,我们追踪了一种由用疏水性纳米颗粒功能化并注入硅油的玻璃表面组成的模型注液表面的老化过程。注液表面完全浸没在水溶液中,并在设定的时间间隔内暴露于声压波中。通过定期测量注液表面的润湿性能来监测老化情况。我们还追踪了注液表面纳米级结构的变化。我们发现,由于油的损失、纳米多孔功能层的平滑以及直接暴露于溶液时基底的降解,注液表面迅速失去其光滑特性。油的损失与水微滴进入油层并将油从表面排挤开一致。这些机制具有普遍性,可能在大多数注液表面的老化过程中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e24/7146855/e1eeddb60062/la0c00059_0001.jpg

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