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Controlled Aggregation And Transportation Of Nanoparticles Using Ultrasonic Needle Probe

机译:使用超声针探针控制纳米粒子的聚集和运输

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Efficient and reproducible aggregation of nanoscale materials and controlled transportation of the aggregated nano materials has huge potential applications in nano fabrication. Here we report an ultrasound based strategy to aggregate nanoparticles at an arbitrary location at the interface between a non-vibrating substrate and water film, and to transport the aggregated spot freely at the interface. The strategy employs the acoustic streaming, which is generated by an ultrasonic needle probe in vibration. In the experiments, the Si nanoparticles are aggregated under the ultrasonic needle probe at a desired location, forming a round spot of nano materials, and the round spot can be transported through an arbitrary path at the interface by moving the device. The dependencies of the acoustic streaming field around the ultrasonic needle probe on the parameters are clarified by numerical simulations.
机译:纳米级材料的高效和可再生聚集和聚集纳米材料的受控运输具有纳米制造中的巨大潜在应用。在这里,我们报告基于超声的策略,将纳米颗粒聚集在非振动基板和水膜之间的界面处的任意位置,并在界面上自由地将聚集点运送。该策略采用声流,由振动中的超声波针探针产生。在实验中,Si纳米颗粒在超声波针探针下聚集在所需位置,形成纳米材料的圆点,并且可以通过移动装置通过界面处的任意路径传送圆点。通过数值模拟阐明了在参数上围绕超声波针探针周围的声学流场的依赖性。

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