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Diffusion of spheres in isotropic and nematic networks of rods: Electrostatic interactions and hydrodynamic screening

机译:球在各向同性和向列网络中的球扩散:静电相互作用和流体动力学筛选

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摘要

Translational diffusion of a small charged tracer sphere in isotropic and nematic suspensions of long and thin charged rods is investigated as a function of ionic strength and rod concentration. A theory for the diffusive properties of a small sphere is developed, where both (screened) hydrodynamic interactions and charge interactions between the tracer sphere and the rod network are analyzed. Hydrodynamic interactions are formulated in terms of the hydrodynamic screening length. As yet, there are no independent theoretical predictions for the hydrodynamic screening length for rod networks. Experimental tracer-diffusion data are presented for various ionic strengths as a function of the rod concentration, both in the isotropic and nematic states. Orientational order parameters are measured for the same ionic strengths as a function of the rod concentration. The hydrodynamic screening length is determined from these experimental data and scaling relations obtained from the above mentioned theory. For the isotropic networks, a master curve is found for the hydrodynamic screening length as a function of the rod concentration. For the nematic networks the screening length turns out to be a very sensitive function of the orientational order parameter. (c) 2007 American Institute of Physics.
机译:研究了小带电示踪球在长而细的带电棒的各向同性和向列悬浮液中的平移扩散与离子强度和棒浓度的关系。建立了小球的扩散特性的理论,在此同时分析了示踪球与棒网络之间的(屏蔽的)流体动力相互作用和电荷相互作用。流体动力相互作用是根据流体动力筛选长度来制定的。到目前为止,还没有关于杆网水力筛选长度的独立理论预测。在各向同性和向列状态下,给出了各种离子强度随棒浓度变化的实验示踪扩散数据。对于相同的离子强度,根据棒浓度测量取向顺序参数。由这些实验数据和由上述理论获得的比例关系确定流体动力筛选长度。对于各向同性网络,发现了流体动力学筛选长度随杆浓度变化的主曲线。对于向列网络,筛选长度证明是取向顺序参数的非常敏感的函数。 (c)2007年美国物理研究所。

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