Guo Zhenjiang, Wang Xian, Zhang Xianren
State Key Laboratory of Organic?Inorganic Composites , Beijing University of Chemical Technology , Beijing 100029 , China.
Langmuir. 2019 Jun 25;35(25):8482-8489. doi: 10.1021/acs.langmuir.9b00772. Epub 2019 Jun 11.
Although the stability of most surface nanobubbles observed can be well interpreted by contact line pinning and supersaturation theory, there is increasing evidence that at least for certain situations, contact line pinning is not required for nanobubble stability. This raises a significant question of what is the stability mechanism for those sessile nanobubbles. Through theoretical analysis and molecular dynamics simulations, in this work, we report two mechanisms for stabilizing surface nanobubbles on flat and homogeneous substrates. One is attributed to constant adsorption of trace impurities on the nanobubble gas?liquid interface, through which nanobubble growing or shrinking causes the increase and decrease of interfacial tension, acting as a restoring force to bring the nanobubble to its equilibrium size. The other is attributed to the deformation of a soft substrate induced by the formed nanobubble, which in turn stabilizes the nanobubble via impeding the contact line motion, similar to self-pinning of microdroplets on soft substrates. Both mechanisms can interpret, depending on the specified conditions, how surface nanobubbles can remain stable in the absence of contact line pinning.
尽管观察到的大多数表面纳米气泡的稳定性可以通过接触线钉扎和过饱和理论得到很好的解释,但越来越多的证据表明,至少在某些情况下,纳米气泡的稳定性并不需要接触线钉扎。这就引出了一个重要问题,即那些固着纳米气泡的稳定机制是什么。通过理论分析和分子动力学模拟,在这项工作中,我们报告了两种在平坦且均匀的基底上稳定表面纳米气泡的机制。一种归因于痕量杂质在纳米气泡气液界面上的持续吸附,通过这种方式,纳米气泡的生长或收缩会导致界面张力的增加和减小,作为一种恢复力将纳米气泡带回其平衡尺寸。另一种归因于所形成的纳米气泡引起的软基底的变形,这反过来通过阻碍接触线运动来稳定纳米气泡,类似于微滴在软基底上的自钉扎。这两种机制都可以根据特定条件解释在没有接触线钉扎的情况下表面纳米气泡如何保持稳定。