There is great interest in the development of micromotors which can convert energy to motion in sub-millimeter dimensions. Micromachines take the micromotor concept a step further, comprising complex systems in which multiple components work in concert to effectively realize complex mechanical tasks. Here we introduce light-driven micromotors and micromachines that rely on optoelectronic tweezers (OET). Using a circular micro-gear as a unit component, we demonstrate a range of new functionalities, including a touchless micro-feed-roller that allows the programming of precise three-dimensional particle trajectories, multi-component micro-gear trains that serve as torque- or velocity-amplifiers, and micro-rack-and-pinion systems that serve as microfluidic valves. These sophisticated systems suggest great potential for complex micromachines in the future, for application in microrobotics, micromanipulation, microfluidics, and beyond.
Reconfigurable multi-component micromachines driven by optoelectronic tweezers.
由光电镊子驱动的可重构多组件微型机器
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作者:Zhang Shuailong, Elsayed Mohamed, Peng Ran, Chen Yujie, Zhang Yanfeng, Peng Jiaxi, Li Weizhen, Chamberlain M Dean, Nikitina Adele, Yu Siyuan, Liu Xinyu, Neale Steven L, Wheeler Aaron R
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Sep 9; 12(1):5349 |
| doi: | 10.1038/s41467-021-25582-8 | ||
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