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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Self-Propulsion Of Catalytic Conical Micro-Swimmer

机译:APS -70TH流体动力学APS分工年会 - 催化锥微型游泳运动员的自推进

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Self-propelled artificial micro-motors have attracted much attention both as fundamental examples of active matter and for their potential biomedical applications (e.g. drug delivery, cell sorting). A popular design exploits the catalytic decomposition of a fuel (e.g. hydrogen peroxide) on the active surface of the motor to produce oxygen bubbles that propel the swimmer, effectively converting chemical energy into swimming motion. We focus here on a conical shape swimmer with chemically-active inner surfaces. Using numerical simulations of the chemical problem and viscous hydrodynamics, we analyze the formation, growth and motion of the bubbles inside the micro-motor and the resulting swimming motion. Our results shed light on the fundamental hydrodynamics of the propulsion of conical swimmers and may help to improve the efficiency of these machines.
机译:自挖的人造微电机都引起了很多关注的主动物质的基本实例和它们的潜在生物医学应用(例如药物递送,细胞分选)。一种流行的设计利用燃料(例如,过氧化氢)对电动机的活性表面的催化分解,以产生推进游泳运动员的氧气气泡,有效地将化学能转化为游泳运动。我们专注于圆锥形的游泳运动员,具有化学活跃的内表面。使用化学问题和粘性流体动力学的数值模拟,我们分析微电机内部气泡的形成,生长和运动和所产生的游泳运动。我们的结果阐明了锥形游泳运动员推进的基本流体动力学,并有助于提高这些机器的效率。

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