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帽状物重量对极靠近壁面的双面粒子运动的影响。

Influence of cap weight on the motion of a Janus particle very near a wall.

作者信息

Rashidi Aidin, Razavi Sepideh, Wirth Christopher L

机构信息

Chemical and Biomedical Engineering Department, Washkewicz College of Engineering, Cleveland State University, 2121 Euclid Avenue, Cleveland, Ohio 44115, USA.

Chemical, Biological, and Materials Engineering Department, University of Oklahoma, Norman, Oklahoma 73019, USA.

出版信息

Phys Rev E. 2020 Apr;101(4-1):042606. doi: 10.1103/PhysRevE.101.042606.

Abstract

The dynamics of anisotropic nano- to micro scale colloidal particles in confined environments, either near neighboring particles or boundaries, is relevant to a wide range of applications. We utilized Brownian dynamics simulations to predict the translational and rotational fluctuations of a Janus sphere with a cap of nonmatching density near a boundary. The presence of the cap significantly impacted the rotational dynamics of the particle as a consequence of gravitational torque at experimentally relevant conditions. Gravitational torque dominated stochastic torque for a particle >1 μm in diameter and with a 20-nm-thick gold cap. Janus particles at these conditions sampled mostly cap-down or "quenched" orientations. Although the results summarized herein showed that particles of smaller diameter (<1 μm) with a thin gold coating (<5 nm) behave similarly to an isotropic particle, small increases in either particle diameter or coating thickness quenched the polar rotation of the particle. Histogram landscapes of the separation distance from the boundary and orientation observations of particles with larger diameters or thicker gold coatings were mostly populated with quenched configurations. Finally, the histogram landscapes were inverted to obtain the potential energy landscapes, providing a road map for experimental data to be interpreted.

摘要

在受限环境中,无论是靠近相邻粒子还是边界,各向异性的纳米到微米级胶体粒子的动力学都与广泛的应用相关。我们利用布朗动力学模拟来预测在边界附近具有密度不匹配帽盖的 Janus 球的平移和旋转涨落。在实验相关条件下,由于重力扭矩,帽盖的存在显著影响了粒子的旋转动力学。对于直径大于 1μm 且带有 20nm 厚金帽的粒子,重力扭矩主导了随机扭矩。在这些条件下,Janus 粒子大多呈现帽盖向下或“淬灭”的取向。尽管本文总结的结果表明,直径较小(<1μm)且金涂层较薄(<5nm)的粒子表现得类似于各向同性粒子,但粒子直径或涂层厚度的微小增加都会淬灭粒子的极性旋转。直径较大或金涂层较厚的粒子与边界的分离距离以及取向观测的直方图分布大多为淬灭构型。最后,将直方图分布反转以获得势能分布,为解释实验数据提供了路线图。

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