State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University , 800 Dongchuan Road, Shanghai 200240, People's Republic of China.
J Am Chem Soc. 2017 Sep 13;139(36):12362-12365. doi: 10.1021/jacs.7b06036. Epub 2017 Aug 30.
This paper explores a new propulsion mechanism that is based on the ejection of hot vapor jet to propel the motor at the liquid/air interface. For conventional photothermal motors, which mostly are driven by Marangoni effect, it is challenging to propel those motors at the surfaces of liquids with low surface tension due to the reduced Marangoni effect. With this new vapor-enabled propulsion mechanism, the motors can move rapidly at the liquid/air interface of liquids with a broad range of surface tensions. A design that can accumulate the hot vapor is further demonstrated to enhance both the propulsion force as well as the applicable range of liquids for such motors. This new propulsion mechanism will help open up new opportunities for the photothermal motors with desired motion controls at a wide range of liquid/air interfaces where hot vapor can be generated.
本文探索了一种新的推进机制,该机制基于喷射热蒸汽来推动液体/空气界面处的马达。对于主要由 Marangoni 效应驱动的传统光热马达,由于 Marangoni 效应的减弱,很难在表面张力较低的液体表面推动这些马达。有了这种新的蒸汽推进机制,马达可以在表面张力范围广泛的液体的液体/空气界面上快速移动。进一步展示了一种可以积聚热蒸汽的设计,以增强这种马达的推进力和适用液体范围。这种新的推进机制将为光热马达在能够产生热蒸汽的各种液体/空气界面上实现所需的运动控制开辟新的机会。