Pal Antara, Martinez Vincent A, Ito Thiago H, Arlt Jochen, Crassous Jérôme J, Poon Wilson C K, Schurtenberger Peter
Division of Physical Chemistry, Department of Chemistry, Lund University, Lund, Sweden.
SUPA, School of Physics and Astronomy, The University of Edinburgh, Edinburgh, UK.
Sci Adv. 2020 Jan 17;6(3):eaaw9733. doi: 10.1126/sciadv.aaw9733. eCollection 2020 Jan.
Anisotropic dynamics on the colloidal length scale is ubiquitous in nature. Of particular interest is the dynamics of systems approaching a kinetically arrested state. The failure of classical techniques for investigating the dynamics of highly turbid suspensions has contributed toward the limited experimental information available up until now. Exploiting the recent developments in the technique of differential dynamic microscopy (DDM), we report the first experimental study of the anisotropic collective dynamics of colloidal ellipsoids with a magnetic hematite core over a wide concentration range approaching kinetic arrest. In addition, we have investigated the effect of an external magnetic field on the resulting anisotropic collective diffusion. We combine DDM with small-angle x-ray scattering and rheological measurements to locate the glass transition and to relate the collective short- and long-time diffusion coefficients to the structural correlations and the evolution of the zero shear viscosity as the system approaches an arrested state.
在胶体长度尺度上的各向异性动力学在自然界中普遍存在。特别令人感兴趣的是接近动力学阻滞状态的系统的动力学。用于研究高浊度悬浮液动力学的经典技术的不足导致了迄今为止可用的实验信息有限。利用差示动态显微镜(DDM)技术的最新进展,我们首次对具有磁性赤铁矿核的胶体椭球体在接近动力学阻滞的宽浓度范围内的各向异性集体动力学进行了实验研究。此外,我们还研究了外部磁场对由此产生的各向异性集体扩散的影响。我们将DDM与小角X射线散射和流变测量相结合,以确定玻璃化转变,并将集体的短时间和长时间扩散系数与结构相关性以及系统接近阻滞状态时零剪切粘度的演变联系起来。