论文标题

纳米结构表面上的界面纳米泡的诱捕

Entrapment of Interfacial Nanobubbles on Nano Structured Surfaces

论文作者

Wang, Yuliang, Li, Xiaolai, Ren, Shuai, Alem, Hadush Tedros, Yang, Lijun, Lohse, Detlef

论文摘要

从基本的角度,由于它们与各种实际应用的相关性,已经对水溶液中疏水表面形成的球形帽形界面纳米泡(NB)进行了广泛的研究。在这项研究中,研究了自发生成的NBS在浸泡纳米结构疏水表面的固体界面上的成核机制。根据表面纳米结构的大小和密度,大小和密度不同的NB被重现和确定性地获得。一个两步的过程可以根据缝隙模型,即通过扩散生长的表面空腔中的空气口袋来解释NB成核。结果显示了直接证据表明NB在浸入表面上自发形成。接下来,揭示了纳米结构对成核NB的大小和形状的影响。特别是,在非圆形纳米处,我们获得了具有非圆形足迹的NB,表明在三相接触线处的强钉力。

Spherical-cap-shaped interfacial nanobubbles (NBs) forming on hydrophobic surfaces in aqueous solutions have extensively been studied both from a fundamental point of view and due to their relevance for various practical applications. In this study, the nucleation mechanism of spontaneously generated NBs at solid-liquid interfaces of immersed nanostructured hydrophobic surfaces is studied. Depending on the size and density of the surface nanostructures, NBs with different size and density were reproducibly and deterministically obtained. A two-step process can explain the NB nucleation, based on the crevice model, i.e., entrapped air pockets in surface cavities which grow by diffusion. The results show direct evidence for the spontaneous formation of NBs on a surface at its immersion. Next, the influence of size and shape of the nanostructures on the nucleated NBs are revealed. In particular, on non-circular nanopits we obtain NBs with a non-circular footprint, demonstrating the strong pinning forces at the three-phase contact line.

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