作为流体动力搅拌器的 Janus 微型搅拌器效率较低。

IF 2.2 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS
Maximilian R Bailey, Dmitry A Fedosov, Federico Paratore, Fabio Grillo, Gerhard Gompper, Lucio Isa
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引用次数: 0

摘要

自泳微推流器产生的流体流动被认为是一种在微米和纳米尺度上增强质量传输和混合的机制。在这里,我们通过实验研究了光催化二氧化硅-钛 Janus 微球的二维活性浴模型在集体行为开始以下的不同微泳密度下增强示踪粒子扩散性的能力。受我们的实验结果与之前的生物微生物实验结果之间相似性的启发,我们随后使用一般的蠕动框架对 Janus 微游子进行建模,特别是将它们视为中性蠕动者。数值模拟忠实地捕捉到了我们的观测结果,让我们深入了解了示踪剂传输的微观机制,并使我们能够将参数空间扩展到实验系统之外。我们发现了强有力的证据,证明近场相互作用主导了活性扬森浴中示踪剂扩散性的增强,从而根据缩放论证确定了化学微泳道增强示踪剂迁移的操作窗口。基于这一论证,我们认为对于许多化学活性胶体系统来说,仅靠流体力学可能不足以诱导具有较大扩散系数的被动成分发生明显的混合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low efficiency of Janus microswimmers as hydrodynamic mixers.

The generation of fluid flows by autophoretic microswimmers has been proposed as a mechanism to enhance mass transport and mixing at the micro- and nanoscale. Here, we experimentally investigate the ability of model 2D active baths of photocatalytic silica-titania Janus microspheres to enhance the diffusivity of tracer particles at different microswimmer densities below the onset of collective behavior. Inspired by the similarities between our experimental findings and previous results for biological microorganisms, we then model our Janus microswimmers using a general squirmer framework, specifically treating them as neutral squirmers. The numerical simulations faithfully capture our observations, offer an insight into the microscopic mechanism underpinning tracer transport, and allow us to expand the parameter space beyond our experimental system. We find strong evidence that near-field interactions dominate enhancements in tracer diffusivity in active Janus baths, leading to the identification of an operating window for enhanced tracer transport by chemical microswimmers based on scaling arguments. Based on this argumentation, we suggest that for many chemically active colloidal systems, hydrodynamics alone is likely to be insufficient to induce appreciable mixing of passive components with large diffusion coefficients.

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来源期刊
Physical Review E
Physical Review E PHYSICS, FLUIDS & PLASMASPHYSICS, MATHEMAT-PHYSICS, MATHEMATICAL
CiteScore
4.50
自引率
16.70%
发文量
2110
期刊介绍: Physical Review E (PRE), broad and interdisciplinary in scope, focuses on collective phenomena of many-body systems, with statistical physics and nonlinear dynamics as the central themes of the journal. Physical Review E publishes recent developments in biological and soft matter physics including granular materials, colloids, complex fluids, liquid crystals, and polymers. The journal covers fluid dynamics and plasma physics and includes sections on computational and interdisciplinary physics, for example, complex networks.
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