论文标题

在拥挤的环境中的胶体杆对齐

Alignment of colloidal rods in crowded environments

论文作者

Calabrese, Vincenzo, Varchanis, Stylianos, Haward, Simon J., Shen, Amy Q.

论文摘要

了解聚合物溶液中胶体棒的流体动力比对是生产结构有序材料的关键。聚合物拥挤如何影响悬浮的胶体杆的流动诱导的对齐,尚不清楚棒和聚合物何时共享相似的长度尺度。我们通过分析悬浮在拥挤的聚合物溶液中的胶体杆的对齐方式来解决这个问题,并与纯溶剂中其他胶体杆提供拥挤的情况进行比较。我们发现聚合物动力学控制了悬挂在聚合物溶液中的剪切诱导的胶体对齐的开始,并且杆对齐的控制参数是魏森贝格的数量,它量化了聚合物对施加流量的弹性响应。此外,我们表明,与剪切速率的胶体对齐不断增加,这是一种普遍的趋势,该趋势与周围的拥挤环境无关。我们的结果表明,可以根据聚合物线圈被流动变形的临界剪切速率预测聚合物溶液中的胶体杆对准,从而有助于各向异性材料的合成和设计。

Understanding the hydrodynamic alignment of colloidal rods in polymer solutions is pivotal for manufacturing structurally ordered materials. How polymer crowding influences the flow-induced alignment of suspended colloidal rods remains unclear when rods and polymers share similar length-scales. We tackle this problem by analyzing the alignment of colloidal rods suspended in crowded polymer solutions, and comparing against the case where crowding is provided by additional colloidal rods in a pure solvent. We find that the polymer dynamics govern the onset of shear-induced alignment of colloidal rods suspended in polymer solutions, and the control parameter for the alignment of rods is the Weissenberg number, quantifying the elastic response of the polymer to an imposed flow. Moreover, we show that the increasing colloidal alignment with the shear rate follows a universal trend that is independent of the surrounding crowding environment. Our results indicate that colloidal rod alignment in polymer solutions can be predicted based on the critical shear rate at which polymer coils are deformed by the flow, aiding the synthesis and design of anisotropic materials.

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