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Experimental Study of the Motion of Patchy Particle Swimmers Near a Wall

机译:墙壁附近的斑块粒子游泳运动员运动的实验研究

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In this work, we demonstrate our ability to precisely tailor the surface activity of self-propelled active colloids by varying the size of the active area. The quasi two-dimensional autonomous motion of spherical patchy particle swimmers is studied in a chemical environment in the vicinity of a solid boundary. Oxidative decomposition of hydrogen peroxide into oxygen and water occurs only on a well-defined Pt-coated section of the polystyrene particle surface. The asymmetric distribution of product molecules interacting with the particle leads to the autonomous motion, which is characterized as the patch size varies from 11 to 25 to 50% of the particle surface area. The phoretic motion of patchy particle swimmers is analytically predicted by a model developed by Popescu et al. and shows good agreement with the experimentally observed velocities when the influence of the wall on the preferential rotational motion of the particles near the solid boundary is considered. The study illustrates the potential to precisely engineer the motion of particles by controlling their properties rather than depending on changes in the environment.
机译:在这项工作中,我们证明了我们通过改变有源区域的大小来精确地定制自驱喷活性胶体的表面活性。在实心边界附近的化学环境中研究了球形斑块颗粒游泳剂的准二维自主运动。仅在聚苯乙烯颗粒表面的明确定义的Pt涂覆的截面上发生过氧化氢的氧化分解到氧气中。与颗粒相互作用的产品分子的不对称分布导致自主运动,其特征在于贴剂尺寸的粒度范围为颗粒表面积的11至25%至50%。 Popescu等人开发的模型分析了斑块粒子游泳剂的方法。并且当考虑墙壁对固体边界附近颗粒的优先旋转运动时,与实验观察的速度展示了良好的一致性。该研究说明了通过控制其性质而不是根据环境的变化来精确地设计粒子的运动。

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