论文标题
柔软的纳米泡会变形刚性眼镜
Soft nanobubbles can deform rigid glasses
论文作者
论文摘要
狭窄的眼镜及其异常的界面流变学在基本研究和众多实际应用中提出了重要问题。在这封信中,我们研究了界面空气纳米泡对在环境条件下浸入水中的超薄高分子玻璃质聚苯乙烯膜的自由表面的影响。特别是,我们揭示了一个违反直觉的事实,即软纳米泡能够变形刚性玻璃的表面,形成纳米蛋白酶的深度,随着时间而增加。通过结合原子原子力 - 微观镜的测量和玻璃自由表面液体样层的改良润滑模型,我们证明了纳米泡中的毛细管压力与玻璃的自由表面上的液体样层一起确定玻璃的自由表面确定纳米异构者的时空生长。最后,从执行玻璃薄膜方程的实验曲线和数值解之间的出色一致性,我们能够精确提取玻璃的表面迁移率。除了揭示和量化表面纳米泡如何变形的浸润玻璃外,直到后者最终从底物露水外,我们的工作还提供了对玻璃表面纳米流变学的新颖,精确且简单的测量。
Confined glasses and their anomalous interfacial rheology raise important questions in fundamental research and numerous practical applications. In this Letter, we study the influence of interfacial air nanobubbles on the free surface of ultrathin high-molecular-weight glassy polystyrene films immersed in water, in ambient conditions. In particular, we reveal the counterintuitive fact that a soft nanobubble is able to deform the surface of a rigid glass, forming a nanocrater with a depth that increases with time. By combining in-situ atomic-force-microscopy measurements and a modified lubrication model for the liquid-like layer at the free surface of the glass, we demonstrate that the capillary pressure in the nanobubble together with the liquid-like layer at the free surface of the glass determine the spatiotemporal growth of the nanocraters. Finally, from the excellent agreement between the experimental profiles and the numerical solutions of the governing glassy thin-film equation, we are able to precisely extract the surface mobility of the glass. In addition to revealing and quantifying how surface nanobubbles deform immersed glasses, until the latter eventually dewet from their substrates, our work provides a novel, precise, and simple measurement of the surface nanorheology of glasses.