Queensland Micro- and Nanotechnology Centre, Nathan Campus, Griffith University, 170 Kessels Road, QLD 4111, Australia.
Lab Chip. 2016 Jun 21;16(12):2211-8. doi: 10.1039/c6lc00378h. Epub 2016 May 18.
Controlled actuation of a floating liquid marble, a liquid droplet coated with hydrophobic particles floating on another liquid surface, is a potential digital microfluidics platform for the transport of aqueous solution with minimal volume loss. This paper reports our recent investigation on the magnetic actuation of floating liquid marbles filled with magnetic particles. The magnetic force and frictional force acting on the floating liquid marble determine the horizontal movement of the marble. We varied the magnetic flux density, flux density gradient, concentration of magnetic particles and speed of the marble to elucidate the relationship between the acting forces. We subsequently determined the suitable operating conditions for the actuation and derived the scaling laws for the actuation parameters.
控制浮动液滴的运动,即覆盖疏水颗粒的液滴漂浮在另一个液体表面上,是一种潜在的数字微流控平台,可用于以最小体积损失输送水溶液。本文报告了我们最近对填充有磁性颗粒的浮动液滴的磁驱动的研究。作用在浮动液滴上的磁力和摩擦力决定了液滴的水平运动。我们改变了磁场密度、磁通密度梯度、磁性颗粒的浓度和液滴的速度,以阐明作用力之间的关系。我们随后确定了合适的驱动操作条件,并得出了驱动参数的标度律。