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排列、上升、附着和趋光性:调控赤铁矿微花生的行为

Alignment, Rising, Sticking, and Phototaxis: Modulating the Behavior of Hematite Micropeanuts.

作者信息

Rivas David P, Shah Zameer Hussain, Shum Henry, Das Sambeeta

机构信息

Department of Mechanical Engineering, University of Delaware, Newark, DE, 19716, USA.

Department of Applied Mathematics, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.

出版信息

Adv Mater Interfaces. 2025 Jan 12. doi: 10.1002/admi.202400741.

Abstract

Artificial active colloids have been an active area of research in the field of active matter and microrobotic systems. In particular, light driven semi-conductor particles have been shown to display interesting behaviors ranging from phototaxis (movement toward or away from a light source), rising from the substrate, inter-particle attraction, attraction to the substrate, or other phenomenon. However, these observations involve multiple different designs of particles in varying conditions, making it unclear how the experimental parameters, such as pH, peroxide concentration, and light intensity, affect the outcomes. In this work, a peanut-shaped hematite semi-conductor particle was shown to exhibit a rich range of behavior as a function of the experimental conditions. The particles show rising, sticking, phototaxis, and in-plane alignment of their long axes perpendicular to a magnetic field. A theoretical model accounting for gravity, van der Waals forces, electric double layer interactions with the glass surface, and self-diffusiophoresis is formulated to describe the system. Incorporating experimental data for the dependence of various properties on pH and ionic concentrations, the balance of competing effects in the model explains many of the observed behaviors, providing insight into the relevant physical phenomena and how different environmental conditions can lead to such a rich diversity of behavior.

摘要

人工活性胶体一直是活性物质和微型机器人系统领域的一个活跃研究领域。特别是,光驱动的半导体颗粒已被证明表现出有趣的行为,包括趋光性(朝向或远离光源移动)、从基底上升、颗粒间吸引、对基底的吸引或其他现象。然而,这些观察涉及在不同条件下的多种不同颗粒设计,使得尚不清楚诸如pH值、过氧化物浓度和光强度等实验参数如何影响结果。在这项工作中,一种花生形状的赤铁矿半导体颗粒被证明根据实验条件表现出丰富多样的行为。这些颗粒表现出上升、粘附、趋光性以及其长轴在平面内垂直于磁场排列。建立了一个考虑重力、范德华力、与玻璃表面的电双层相互作用以及自扩散电泳的理论模型来描述该系统。结合各种性质对pH值和离子浓度依赖性的实验数据,模型中竞争效应的平衡解释了许多观察到的行为,为相关物理现象以及不同环境条件如何导致如此丰富多样的行为提供了见解。

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