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多孔金纳米膜上微泡的全光形成与操控

All-Optical Formation and Manipulation of Microbubbles on a Porous Gold Nanofilm.

作者信息

Cao Qin, Wu Tianli, Chen Xixi, Gong Zhiyong, Wen Ahao

机构信息

Institute of Nanophotonics, Jinan University, Guangzhou 511443, China.

出版信息

Micromachines (Basel). 2020 May 10;11(5):489. doi: 10.3390/mi11050489.

Abstract

Microbubble generation and manipulation in aqueous environments are techniques that have attracted considerable attention for their microfluidic and biological applications. Ultrasonic and hydrodynamic methods are commonly used to form and manipulate microbubbles, but these methods are limited by the relatively low precision of the microbubble sizes and locations. Here, we report an all-optical method for generation and manipulation of microbubbles with ~100 nm precision by using "hot spots" on a porous gold nanofilm under the illumination of near-infrared focused laser beam. The microbubble diameter ranged from 700 nm to 100 μm, with a standard deviation of 100 nm. The microbubbles were patterned into two-dimensional arrays, with an average location deviation of 90 nm. By moving the laser beam, the microbubbles could be manipulated to a desired region. This work provides a controllable way to form and manipulate microbubbles with ~100 nm precision, which is expected to have applications in optofluidic and plasmonic devices.

摘要

在水性环境中产生和操控微泡是因其在微流体和生物应用方面而备受关注的技术。超声和流体动力学方法通常用于形成和操控微泡,但这些方法受到微泡尺寸和位置相对较低精度的限制。在此,我们报告一种全光学方法,通过在近红外聚焦激光束照射下利用多孔金纳米膜上的“热点”,以约100纳米的精度产生和操控微泡。微泡直径范围为700纳米至100微米,标准偏差为100纳米。微泡被图案化为二维阵列,平均位置偏差为90纳米。通过移动激光束,可以将微泡操控到所需区域。这项工作提供了一种以约100纳米精度形成和操控微泡的可控方法,有望在光流体和等离子体设备中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/752c/7281023/da21828a53d7/micromachines-11-00489-g001.jpg

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