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Controlled manipulation and in situ mechanical measurement of single co nanowire with a laser-induced cavitation bubble

机译:激光诱导的空化气泡对单钴纳米线的受控操纵和原位机械测量

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摘要

The flow induced by a single laser-induced cavitation bubble is used to manipulate individual Co nanowires. The short-lived (<20 μs) bubble with a maximum size of 45 μm is created in an aqueous solution with a laser pulse. Translation, rotation, and radial motion of the nanowire can be selectively achieved by varying the initial distance and orientation of the bubble with respect to the nanowire. Depending on the initial distance, the nanowire can be either pushed away or pulled toward the laser focus. No translation is observed for a distance further than approximately 60 μm, while at closer distance, the nanowire can be bent as a result of the fast flow induced during the bubble collapse. Studying the dynamics of the shape recovery allows an estimation of the Young's modulus of the nanowire. The low measured Young's modulus (in a range from 9.6 to 13.0 GPa) of the Co nanowire is attributed to a softening effect due to structural defects and surface oxidation layer. Our study suggests that this bubble-based technique allows selectively transporting, orienting, and probing individual nanowires and may be exploited for constructing functional nanodevices.
机译:由单个激光诱导的空化气泡引起的流动用于操纵单个Co纳米线。在含有激光脉冲的水溶液中会产生最大尺寸为45μm的短寿命(<20μs)气泡。纳米线的平移,旋转和径向运动可以通过改变气泡相对于纳米线的初始距离和方向来选择性地实现。根据初始距离,可以将纳米线推开或拉向激光焦点。在约60μm的距离内未观察到平移,而在更近的距离处,由于气泡破裂期间引起的快速流动,纳米线可能会弯曲。研究形状恢复的动力学可以估算纳米线的杨氏模量。 Co纳米线的低测得的杨氏模量(在9.6至13.0GPa的范围内)归因于由于结构缺陷和表面氧化层的软化作用。我们的研究表明,这种基于气泡的技术可以选择性地运输,定向和探测单个纳米线,并且可以用于构建功能性纳米器件。

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