论文标题

在清洁和表面活性剂覆盖的滴水中对活动的微武器进行分析描述

Towards an analytical description of active microswimmers in clean and in surfactant-covered drops

论文作者

Sprenger, Alexander R., Shaik, Vaseem A., Ardekani, Arezoo M., Lisicki, Maciej, Mathijssen, Arnold J. T. M., Guzmán-Lastra, Francisca, Löwen, Hartmut, Menzel, Andreas M., Daddi-Moussa-Ider, Abdallah

论文摘要

几何限制经常在生物学世界中遇到,并强烈影响粘性流中主动悬浮液的稳定性,拓扑和运输特性。基于远场分析模型,理论上检查了自propell的微型游泳器的低reynolds-number运动,从理论上检查了干净的粘性滴或覆盖有均匀分布的表面活性剂的滴水。表面活性剂诱导的界面粘性应力由良好的Boussinesq-Scriven构成性流变学模型描述。此外,活性剂由力偶极子表示,并研究了游泳者和隔滴之间的流体介导的流体动力耦合。我们发现,表面活性剂的存在通过增强其重新定位会显着改变封装游泳者的动态。用无限级别的谐波组件介绍并表达了滴水液内的速度图像和偶极流量奇异性的精确解。我们的结果为控制有限的活性物质系统的指导原则提供了有用的见解,并支持利用合成的微晶状体将降落驱动到有针对性的药物输送应用中。

Geometric confinements are frequently encountered in the biological world and strongly affect the stability, topology, and transport properties of active suspensions in viscous flow. Based on a far-field analytical model, the low-Reynolds-number locomotion of a self-propelled microswimmer moving inside a clean viscous drop or a drop covered with a homogeneously distributed surfactant, is theoretically examined. The interfacial viscous stresses induced by the surfactant are described by the well-established Boussinesq-Scriven constitutive rheological model. Moreover, the active agent is represented by a force dipole and the resulting fluid-mediated hydrodynamic couplings between the swimmer and the confining drop are investigated. We find that the presence of the surfactant significantly alters the dynamics of the encapsulated swimmer by enhancing its reorientation. Exact solutions for the velocity images for the Stokeslet and dipolar flow singularities inside the drop are introduced and expressed in terms of infinite series of harmonic components. Our results offer useful insights into guiding principles for the control of confined active matter systems and support the objective of utilizing synthetic microswimmers to drive drops for targeted drug delivery applications.

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