Li Shuai, Bista Pravash, Weber Stefan A L, Kappl Michael, Butt Hans-Jürgen
Max Planck Institute for Polymer Research, Ackermannweg 10, 55128Mainz, Germany.
Langmuir. 2022 Oct 18;38(41):12610-12616. doi: 10.1021/acs.langmuir.2c02085. Epub 2022 Oct 3.
When a drop of a polar liquid slides over a hydrophobic surface, it acquires a charge. As a result, the surface charges oppositely. For applications such as the generation of electric energy, lubricant-infused surfaces (LIS) may be important because they show a low friction for drops. However, slide electrification on LIS has not been studied yet. Here, slide electrification on lubricant-infused surfaces was studied by measuring the charge generated by series of water drops sliding down inclined surfaces. As LIS, we used PDMS-coated glass with micrometer-thick silicone oil films on top. For PDMS-coated glass without lubricant, the charge for the first drop is highest. Then it decreases and saturates at a steady state charge per drop. With lubricant, the drop charge starts from 0, then it increases and reaches a maximum charge per drop. Afterward, it decreases again before reaching its steady-state value. This dependency is not a unique phenomenon for lubricant-infused PDMS; it also occurs on lubricant-infused micropillar surfaces. We attribute this dependency of charge on drop numbers to a change in surface conductivity and depletion of lubricant. These findings are helpful for understanding the charge process and optimizing solid-liquid nanogenerator devices in applications.
当一滴极性液体在疏水表面滑动时,它会获得电荷。结果,表面会带上相反的电荷。对于诸如电能产生等应用而言,注入润滑剂的表面(LIS)可能很重要,因为它们对液滴显示出低摩擦。然而,尚未对注入润滑剂的表面上的滑动起电进行研究。在此,通过测量一系列水滴沿倾斜表面滑下产生的电荷,对注入润滑剂的表面上的滑动起电进行了研究。作为注入润滑剂的表面,我们使用了顶部带有微米厚硅油膜的聚二甲基硅氧烷(PDMS)涂层玻璃。对于没有润滑剂的PDMS涂层玻璃,第一滴的电荷最高。然后它会下降并在每滴稳定电荷处饱和。有润滑剂时,液滴电荷从0开始,然后增加并达到每滴最大电荷。之后,它在达到其稳态值之前再次下降。这种依赖性并非注入润滑剂的PDMS所独有的现象;它也发生在注入润滑剂的微柱表面上。我们将这种电荷对液滴数量的依赖性归因于表面电导率的变化和润滑剂的耗尽。这些发现有助于理解电荷过程,并在应用中优化固液纳米发电机装置。