Hoda Nazish, Kumar Satish
Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Chem Phys. 2008 Apr 28;128(16):164907. doi: 10.1063/1.2901052.
We probe the effects of solvent quality and charge patterning on polyelectrolyte adsorption in shear flow using Brownian dynamics simulations with hydrodynamic interaction (HI). The polyelectrolyte is modeled as a freely jointed bead-rod chain, and electrostatic and non-electrostatic interactions are accounted for by using screened Coulombic and Lennard-Jones potentials, respectively. In the absence of flow, the conformation of a polyelectrolyte molecule adsorbed onto a uniformly charged surface changes from flat to globular with an increase in bead-bead attraction (hydrophobicity), consistent with prior experimental observations. In the presence of flow, migration due to bead-wall HI and, as a consequence, desorption decrease with an increase in bead-bead attraction, implying that flow-induced desorption is more difficult under poor-solvent conditions. When bead-bead non-electrostatic attraction is strong, desorption can be enhanced by increasing bead-bead electrostatic repulsion. Analogous to the effect of bead-surface electrostatic attraction, an increase in the strength of bead-surface non-electrostatic attraction reduces desorption. We also study the effect of shear flow on the adsorption of a polyelectrolyte molecule onto surfaces decorated with periodic arrays of charged patches. An increase in patch periodicity increases desorption even when the effective surface charge density is kept the same. The results of this work suggest mechanisms for controlling the desorption of polyelectrolyte molecules in shear flows.
我们使用包含流体动力学相互作用(HI)的布朗动力学模拟,探究了溶剂质量和电荷图案化对剪切流中聚电解质吸附的影响。聚电解质被建模为自由连接的珠-杆链,静电相互作用和非静电相互作用分别通过屏蔽库仑势和 Lennard-Jones 势来描述。在无流动情况下,吸附在均匀带电表面上的聚电解质分子的构象随着珠-珠吸引力(疏水性)的增加从扁平变为球状,这与先前的实验观察结果一致。在有流动的情况下,由于珠-壁流体动力学相互作用导致的迁移以及随之而来的解吸随着珠-珠吸引力的增加而减少,这意味着在不良溶剂条件下流动诱导的解吸更难。当珠-珠非静电吸引力很强时,可以通过增加珠-珠静电排斥来增强解吸。与珠-表面静电吸引力的作用类似,珠-表面非静电吸引力强度的增加会减少解吸。我们还研究了剪切流对聚电解质分子吸附到带有周期性排列的带电斑块的表面上的影响。即使有效表面电荷密度保持不变,斑块周期性的增加也会增加解吸。这项工作的结果提出了控制剪切流中聚电解质分子解吸的机制。