论文标题
旋转的微角色在流体界面处进行吸附监测
Rotating Micro-Spheres for Adsorption Monitoring at a Fluid Interface
论文作者
论文摘要
假设:广泛的现象,例如乳化和乳液稳定性,泡沫形成或液体蒸发,与吸附胶体颗粒的动力学密切相关。阐明所隐含的机制是正确设计许多不同类型材料的关键。 实验:被迫在流体界面附近旋转的微球表现出一种旋转 - 翻译流体动力机制,一旦粒子突出界面,该机制就会受到毛细管扭矩的阻碍。在这些条件下,运动球的比率的时间演变提供了对吸附动力学的直接描述,而显微镜监测粒子加速度\减速\减速的监测则告知了吸附\吸附动力学。在这项工作中,提出的策略是在带有球形磁颗粒负电荷的空气/水界面上应用的,被迫通过旋转磁场的作用旋转。 研究结果:所提出的方法可以在过程的最早阶段遵循吸附/解吸动力学,当检测到一小部分颗粒的解吸并估计吸附/解吸常数的近似值。获得的结果表明,添加单价盐或阳离子(阴离子)表面活性剂会促进(抑制)颗粒之间永久键的吸附和形成。
Hypothesis: A broad range of phenomena, such as emulsification and emulsion stability, foam formation or liquid evaporation, are closely related to the dynamics of adsorbing colloidal particles. Elucidation of the mechanisms implied is key to a correct design of many different types of materials. Experiments: Microspheres forced to rotate near a fluid interface exhibit a roto-translational hydrodynamic mechanism that is hindered by capillary torques as soon as the particles protrude the interface. Under these conditions, the time evolution in the ratio of moving spheres provides a direct description of the adsorption kinetics, while microscopy monitoring of particle acceleration\deceleration informs about the adsorption\desorption dynamics. In this work, the proposed strategy is applied at an air/water interface loaded with spherical magnetic particles negatively charged, forced to rotate by the action of a rotating magnetic field. Findings: The proposed method enables the adsorption/desorption dynamics to be followed during the earliest phase of the process, when desorption of a small fraction of particles is detected, as well as to estimate approximated values of the adsorption/desorption constants. The results obtained show that the addition of a monovalent salt or a cationic (anionic) surfactant promotes (inhibits) both adsorption and formation of permanent bonds between particles.