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首页> 外文期刊>Chemistry: A European journal >Influence of pH on the Motion of Catalytic Janus Particles and Tubular Bubble-Propelled Micromotors
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Influence of pH on the Motion of Catalytic Janus Particles and Tubular Bubble-Propelled Micromotors

机译:pH值对催化性Janus颗粒和管状气泡推进微电机运动的影响

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摘要

Self-propelled miniaturized machines harness the chemical potential of their environment for movement. Locomotion of chemically powered micromotors have been hugely dependent on the surroundings. The use of pH to alter the mobility of micromotors is demonstrated in this work through the manipulation of hydrogen peroxide chemistry in different acidity/alkalinity. The sequential addition of sodium hydroxide to increase the pH of the solution led to a consequent increase in activity of micromotors. Meanwhile, addition of hydrochloric acid compromised the structural integrity of the microstructures, culminating in locomotive changes. Such dramatic changes in activity and velocities of the micromotors allow the usage of this behavior for pH detection. This concept was illustrated with Janus silver micromotors and tubular bimetallic Cu/Pt micromotors. Alteration of pH serves as a useful general strategy for increasing hydrogen peroxide decomposition for enhanced oxygen-bubble propulsion in catalytic micromotors.
机译:自推进式小型机器可以利用其周围环境的化学势进行运动。化学动力微型电动机的运动在很大程度上取决于周围环境。在这项工作中,通过在不同的酸度/碱度下对过氧化氢化学的控制,证明了使用pH值来改变微电机的运动性。依次添加氢氧化钠以增加溶液的pH导致随之而来的微马达活性的增加。同时,添加盐酸损害了微结构的结构完整性,最终导致机车的变化。微型马达的活动和速度的这种剧烈变化允许将这种行为用于pH检测。 Janus银微型电动机和管状双金属Cu / Pt微型电动机对此概念进行了说明。 pH的变化是增加过氧化氢分解以增强催化微电机中的氧气气泡推进作用的有用的一般策略。

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