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Geometric asymmetry driven Janus micromotorsf

机译:几何不对称Janus micromotorsf驱动

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摘要

The production and application of nano-/micromotors is of great importance. In order for the motors to work, asymmetry in their chemical composition or physical geometry must be present if no external asymmetric field is applied. In this paper, we present a "coconut" micromotor made of platinum through the partial or complete etching of the silica templates. It was shown that although both the inner and outer surfaces are made of the same material (Pt), motion of the structure can be observed as the convex surface is capable of generating oxygen bubbles. This finding shows that not only the chemical asymmetry of the micromotor, but also its geometric asymmetry can lead to fast propulsion of the motor. Moreover, a considerably higher velocity can be seen for partially etched coconut structures than the velocities of Janus or fully etched, shell-like motors. These findings will have great importance on the design of future micromotors.
机译:的生产和应用毫微/纳米马达是非常重要的。马达工作,不对称的化学成分或物理几何必须现在如果没有外部不对称场应用。通过部分微电机的铂金或完整的蚀刻硅模板。结果表明,虽然两个内在和外在吗表面是由相同的材料(Pt),运动的结构可以观察到凸表面生成氧气的能力泡沫。微电机的化学不对称,但也其几何不对称会导致快推进电机的。更高的速度可以看到部分蚀刻椰子结构比Janus的速度或完全侵蚀,似壳的汽车。结果会对设计非常重要未来的纳米马达。

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