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Dewetting Kinetics on Silica Substrates - Three-Phase Contact Expansion Measurements for Aqueous Dodecylammonium Chloride Films

机译:二氧化硅基材的脱水动力学 - 用于氯化亚甲基氯化物水溶液的三相接触膨胀测量

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The dewetting kinetics between a small air-liquid interface and a silica (negatively charged in water) planar surface in solutions of dodecylammonium chloride (cationic surfactant) has been investigated using the Scheludko cell and digital high-speed video microscopy. The gas-liquid interface was created at the bottom of a small silica capillary of the cell and then was moved towards the silica planar surface. After the rupture of the liquid films between the interfaces, the expansion of the gas-liquid-solid three-phase contact (TPC) line was observed and recorded using a digital high-speed video microscope system, operating at 1000 frames per second. The surface tension of the surfactant solution was measured using the pendant drop technique. The equilibrium contact angle was measured using the Scheludko-Minings method with a silica micro-sphere. The TPC radius was determined as a function of time and compared against the available hydrodynamic and molecular-kinetic models. The experimental data are described very well by the molecular-kinetic model for the TPC line motion. The hydrodynamic model is in agreement with the experimental data only for a short time after inception of the three-phase contact expansion.
机译:使用Scheludko Cell和数字高速视频显微镜研究了小型空气界面和在水)平面表面的小型空气界面和二氧化硅(水)平面表面之间的脱模动力学。在电池的小二氧化硅毛细管的底部产生气液界面,然后朝向二氧化硅平面表面移动。在界面之间的液体膜破裂之后,使用数字高速视频显微镜系统观察和记录气液固体三相触点(TPC)线的膨胀,每秒运行1000帧。使用吊坠滴技术测量表面活性剂溶液的表面张力。使用Scheludko-Minings方法用二氧化硅微球测量平衡接触角。 TPC半径被确定为时间的函数,并与可用的流体动力学和分子动力学模型进行比较。通过用于TPC线运动的分子动力学模型来描述实验数据。流体动力学模型同时与实验数据同时在三相接触膨胀后的短时间内。

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