Manor Ofer, Vakarelski Ivan U, Stevens Geoffrey W, Grieser Franz, Dagastine Raymond R, Chan Derek Y C
Particulate Fluids Processing Centre, University of Melbourne, Parkville, Victoria 3010, Australia.
Langmuir. 2008 Oct 21;24(20):11533-43. doi: 10.1021/la802206q. Epub 2008 Sep 23.
A bubble attached to the end of an atomic force microscope cantilever and driven toward or away from a flat mica surface across an aqueous film is used to characterize the dynamic force that arises from hydrodynamic drainage and electrical double layer interactions across the nanometer thick intervening aqueous film. The hydrodynamic response of the air/water interface can range from a classical fully immobile, no-slip surface in the presence of added surfactants to a partially mobile interface in an electrolyte solution without added surfactants. A model that includes the convection and diffusion of trace surface contaminants can account for the observed behavior presented. This model predicts quantitatively different interfacial dynamics to the Navier slip model that can also be used to fit dynamic force data with a post hoc choice of a slip length.
将连接到原子力显微镜悬臂末端的气泡朝着或远离穿过水膜的平坦云母表面驱动,用于表征由纳米厚的中间水膜中的流体动力排水和双电层相互作用产生的动态力。空气/水界面的流体动力响应范围可以从添加表面活性剂时经典的完全固定、无滑移表面到不添加表面活性剂的电解质溶液中的部分移动界面。一个包含痕量表面污染物对流和扩散的模型可以解释所呈现的观察到的行为。该模型预测的界面动力学与纳维滑移模型在定量上不同,纳维滑移模型也可用于通过事后选择滑移长度来拟合动态力数据。