论文标题
衰老对模型液体注入表面的结构和特性的影响
The Effect of Ageing on the Structure and Properties of Model Liquid Infused Surfaces
论文作者
论文摘要
液体注入的表面(LIS)具有独特的特性,使其成为广泛应用的理想候选者,从防污染和抗冰涂层到自我修复表面和受控润湿。但是,当暴露于现实的环境条件时,LIS倾向于老化并逐渐失去其理想的特性,从而可能损害其应用。相关的老化机制仍然很少了解,反映现实生活的结果很少。在这里,我们跟踪由疏水纳米颗粒功能化并注入硅油的玻璃表面组成的模型LIS的衰老。将LI完全浸入水溶液中,并暴露于声压波的设定时间间隔。通过定期测量LIS的润湿特性来监测衰老。我们还跟踪了LIS纳米级结构的变化。我们发现,当直接暴露于溶液时,LIS迅速失去了湿滑性能,纳米多孔功能层的平滑和底物降解。油损失与进入油层并将油从表面流离失所的水微螺皮一致。这些机制是一般的,可以在大多数LI的衰老中发挥作用。
Liquid infused surfaces (LIS) exhibit unique properties that make them ideal candidates for a wide range of applications, from anti-fouling and anti-icing coatings to self-healing surfaces and controlled wetting. However, when exposed to realistic environmental conditions, LIS 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 model LIS composed of glass surfaces functionalized with hydrophobic nanoparticles and infused with silicone oil. The LIS 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' wetting properties. We also track changes to the LIS' nanoscale structure. We find that the LIS rapidly lose their slippery properties due to 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 LIS.