Repulsive Van der Waals forces in soft matter: Why bubbles do not stick to walls

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Abstract

Measurements of nonequilibrium hydrodynamic interactions between bubbles and solid surfaces in water provide direct evidence that repulsive van der Waals forces of quantum origin control the behavior of liquid films on solids in air. In addition to being the simplest and most universal 3-phase system, the deformable air-water interface greatly enhances the sensitivity of force measurements compared with rigid systems. The strength of the repulsive interaction, controlled by the choice of solid, is sufficient to prevent coalescence (sticking) on separation due to hydrodynamic interactions. © 2011 American Physical Society.

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Tabor, R. F., Manica, R., Chan, D. Y. C., Grieser, F., & Dagastine, R. R. (2011). Repulsive Van der Waals forces in soft matter: Why bubbles do not stick to walls. Physical Review Letters, 106(6). https://doi.org/10.1103/PhysRevLett.106.064501

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