Department of Physics, The University of Tokyo, Tokyo, Japan.
Phys Rev Lett. 2010 Dec 31;105(26):268302. doi: 10.1103/PhysRevLett.105.268302. Epub 2010 Dec 20.
We study self-propulsion of a half-metal coated colloidal particle under laser irradiation. The motion is caused by self-thermophoresis: i.e., absorption of a laser at the metal-coated side of the particle creates local temperature gradient which in turn drives the particle by thermophoresis. To clarify the mechanism, temperature distribution and a thermal slip flow field around a microscale Janus particle are measured for the first time. With measured temperature drop across the particle, the speed of self-propulsion is corroborated with the prediction based on accessible parameters. As an application for driving a micromachine, a microrotor is demonstrated.
我们研究了在激光照射下涂有半金属的胶体颗粒的自推进。运动是由自热泳引起的:即,颗粒金属涂层一侧吸收激光会产生局部温度梯度,进而通过热泳驱动颗粒。为了阐明这种机制,我们首次测量了微尺度的 Janus 颗粒周围的温度分布和热滑移流场。根据测量到的颗粒间温度降,自推进速度与基于可获取参数的预测结果相符。作为驱动微机器的一种应用,我们演示了一个微型转子。