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首页> 外文期刊>ACS nano >Kilohertz Rotation of Nanorods Propelled by Ultrasound, Traced by Microvortex Advection of Nanoparticles
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Kilohertz Rotation of Nanorods Propelled by Ultrasound, Traced by Microvortex Advection of Nanoparticles

机译:超声推动的纳米棒的千赫兹旋转,通过纳米粒子的微涡流平流追踪

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We measure the microvortical flows around gold nanorods propelled by ultrasound in water using polystyrene nanoparticles as optical tracers.We infer the rotational frequencies of such nanomotors assuming a hydrodynamicmodel of this interaction. In this way, we find that nanomotors rotate around their longitudinal axes at frequencies of up to ≈ 2.5 kHz, or ≈ 150 000 rpm, in the planar pressure node of a half-wavelength layered acoustic resonator driven at ≈ 3 MHz with an acoustic energy density of <10 J·3 m~(-3). The corresponding tangential speeds of up to≈2.5mm~3·s~(-1) at a nanomotor radius of ≈ 160 nm are 2 orders of magnitude faster than the translational speeds of up to≈20 μm3·s~(-1). We also find that rotation and translation are independent modes of motion within experimental uncertainty. Our study is an important step toward understanding the behavior and fulfilling the potential of this dynamic nanotechnology for hydrodynamically interacting with biological media, as well as other applications involving nanoscale transport, mixing, drilling, assembly, and rheology. Our results also establish the fastest reported rotation of a nanomotor in aqueous solution.
机译:我们使用聚苯乙烯纳米粒子作为光学示踪剂,通过超声在水中推动了金纳米棒周围的微涡流,并假设这种相互作用的流体动力学模型来推断此类纳米电机的旋转频率。通过这种方式,我们发现,纳米电机在半波分层声共振器的平面压力节点中以约≈2.5 kHz或≈150 000 rpm的频率绕其纵轴旋转,并以声能驱动≈3 MHz密度<10 J·3 m〜(-3)。在≈160 nm的纳米电机半径下,对应的切向速度高达≈2.5mm〜3·s〜(-1)比平移速度高达≈20μm3·s〜(-1)快2个数量级。 。我们还发现,旋转和平移是实验不确定性内的独立运动模式。我们的研究是了解这种动态纳米技术与生物介质进行流体动力学相互作用以及其他涉及纳米级运输,混合,钻探,组装和流变学应用的行为并发挥其潜力的重要一步。我们的研究结果还建立了纳米马达在水溶液中旋转最快的报道。

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