Departamento de Química Física I, Facultad de Química, Universidad Complutense, 28040 Madrid, Spain.
CNR-Istituto per L'Energetica e l'Interfase, Via De Marini 6, Genova, Italy.
Adv Colloid Interface Sci. 2014 Apr;206:303-19. doi: 10.1016/j.cis.2013.10.010. Epub 2013 Oct 19.
We review the dynamics of particle laden interfaces, both particle monolayers and particle+surfactant monolayers. We also discuss the use of the Brownian motion of microparticles trapped at fluid interfaces for measuring the shear rheology of surfactant and polymer monolayers. We describe the basic concepts of interfacial rheology and the different experimental methods for measuring both dilational and shear surface complex moduli over a broad range of frequencies, with emphasis in the micro-rheology methods. In the case of particles trapped at interfaces the calculation of the diffusion coefficient from the Brownian trajectories of the particles is calculated as a function of particle surface concentration. We describe in detail the calculation in the case of subdiffusive particle dynamics. A comprehensive review of dilational and shear rheology of particle monolayers and particle+surfactant monolayers is presented. Finally the advantages and current open problems of the use of the Brownian motion of microparticles for calculating the shear complex modulus of monolayers are described in detail.
我们回顾了颗粒负载界面的动力学,包括颗粒单层和颗粒+表面活性剂单层。我们还讨论了利用被困在流体界面上的微粒子的布朗运动来测量表面活性剂和聚合物单层的剪切流变学。我们描述了界面流变学的基本概念以及测量拉伸和剪切表面复模量的不同实验方法,重点介绍了微流变学方法。在颗粒被困在界面的情况下,从颗粒的布朗轨迹计算扩散系数作为颗粒表面浓度的函数。我们详细描述了亚扩散颗粒动力学的计算。综述了颗粒单层和颗粒+表面活性剂单层的拉伸和剪切流变学。最后,详细描述了利用微粒子的布朗运动计算单层剪切复模量的优点和当前存在的问题。