Holmqvist Peter, Dhont Jan K G, Lang Peter R
Forschugszentrum Jülich, Institut für Festkörperforschung, Soft Matter Division, D-52425 Jülich, Germany.
J Chem Phys. 2007 Jan 28;126(4):044707. doi: 10.1063/1.2431175.
The dynamics of colloidal spheres near to a wall is studied with an evanescent wave scattering setup that allows for an independent variation of the components of the scattering wave vector normal and parallel to the wall. The correlation functions obtained with this novel instrumentation are interpreted on the basis of an expression for their short time behavior that includes hydrodynamic interactions between the colloidal spheres and the wall. The combination of the evanescent wave scattering setup and the exact expression for the short time behavior of correlation functions allows for an unambiguous measurement of the particle mobility parallel and normal to the wall by means of light scattering. It is possible to measure the viscous wall drag effect on the dynamics of particles with radii as small as 27 nm, where, however, the method reaches its limits due to the low scattering intensities of such small particles.
利用倏逝波散射装置研究了靠近壁面的胶体球的动力学,该装置允许独立改变散射波矢垂直和平行于壁面的分量。基于包含胶体球与壁面之间流体动力学相互作用的短时间行为表达式,对用这种新型仪器获得的相关函数进行了解释。倏逝波散射装置与相关函数短时间行为的精确表达式相结合,使得通过光散射能够明确测量粒子平行和垂直于壁面的迁移率。对于半径小至27nm的粒子动力学,有可能测量粘性壁面拖曳效应,然而,由于此类小粒子的散射强度较低,该方法在此处达到了其极限。