Koenderink Gijsberta H, Sacanna Stefano, Aarts Dirk G A L, Philipse A P
Physics of Complex Systems, Vrije Universiteit, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Feb;69(2 Pt 1):021804. doi: 10.1103/PhysRevE.69.021804. Epub 2004 Feb 23.
We report an experimental study of rotational and translational diffusion and sedimentation of colloidal tracer spheres in semidilute solutions of the nonadsorbing semiflexible polymer xanthan. The tracers are optically anisotropic, permitting depolarized dynamic light scattering measurements without interference from the polymer background. The xanthan solutions behave rheologically like model semidilute polymeric solutions with long-lived entanglements. On the time scale of tracer motion the xanthan solutions are predominantly elastic. The generalized Stokes-Einstein relation describing the polymer solution as a continuous viscous fluid therefore severely overestimates the tracer hindrance. Instead, effective medium theory, describing the polymer solution as a homogeneous Brinkman fluid with a hydrodynamic screening length equal to the concentration-dependent static correlation length, is in excellent agreement with the tracer sedimentation and rotational diffusion coefficients. Rotational diffusion, however, is at the same time in good agreement with a simple model of a rotating sphere in a concentric spherical depletion cavity. Translational diffusion is faster than predicted for a Brinkman fluid, likely due to polymer depletion.
我们报道了一项关于非吸附性半柔性聚合物黄原胶半稀溶液中胶体示踪球的旋转和平动扩散以及沉降的实验研究。示踪物具有光学各向异性,使得去偏振动态光散射测量不受聚合物背景的干扰。黄原胶溶液在流变学上表现得像具有长寿命缠结的典型半稀聚合物溶液。在示踪物运动的时间尺度上,黄原胶溶液主要表现为弹性。将聚合物溶液描述为连续粘性流体的广义斯托克斯 - 爱因斯坦关系因此严重高估了示踪物的阻碍作用。相反,有效介质理论将聚合物溶液描述为具有等于浓度依赖静态相关长度的流体动力学屏蔽长度的均匀布林克曼流体,与示踪物沉降和旋转扩散系数非常吻合。然而,旋转扩散同时也与同心球形耗尽腔中旋转球体的简单模型非常吻合。平动扩散比布林克曼流体预测的要快,这可能是由于聚合物耗尽所致。