论文标题

单粒子水平访问密集胶体悬浮液中球之间的流体动力和摩擦耦合

Single-particle level access to hydrodynamic and frictional coupling between spheres in dense colloidal suspensions

论文作者

Yanagishima, Taiki, Liu, Yanyan, Tanaka, Hajime, Dullens, Roel

论文摘要

胶体球在密集的悬浮液中的旋转布朗运动反映了局部流体动力学和摩擦,这既是非线性流变学现象的关键,例如剪切粉状和抑制作用,以及在拥挤的环境中的运输,包括细胞内迁移和血液流动。为了在实验上充分阐明旋转动力学的作用,同时测量所有球体的翻译和旋转运动至关重要。在这里,我们使用与颗粒体不同的荧光团具有不同的,完全嵌入的核心的构图均匀的胶体球,从而可以在单粒子水平上访问所有颗粒的旋转运动。我们揭示了带电胶体晶体中的颗粒室内流体动力旋转耦合。我们还发现,较高的晶体中较高的局部结晶度增强了旋转扩散率,并且由于摩擦耦合,几乎捕捉的颗粒表现出粘性旋转运动。我们的方法阐明了对密集胶体材料中球形颗粒的局部旋转动力学的新灯。

The rotational Brownian motion of colloidal spheres in dense suspensions reflects local hydrodynamics and friction, both key to non-linear rheological phenomena such as shear-thickening and jamming, and transport in crowded environments, including intracellular migration and blood flow. To fully elucidate the role of rotational dynamics experimentally, it is crucial to measure the translational and rotational motion of all spheres simultaneously. Here, we develop compositionally uniform colloidal spheres with an off-centre, fully embedded core with a different fluorophore to the particle body, allowing access to rotational motion for all particles at the single-particle level. We reveal interparticle hydrodynamic rotational coupling in charged colloidal crystals. We also find that higher local crystallinity in denser crystals enhances rotational diffusivity, and that nearly arrested particles exhibit a stick-slip rotational motion due to frictional coupling. Our method sheds new light on the largely-unexplored local rotational dynamics of spherical particles in dense colloidal materials.

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