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利用磁力和静电力控制水滴

Control of aqueous droplets using magnetic and electrostatic forces.

作者信息

Ohashi Tetsuo, Kuyama Hiroki, Suzuki Koichi, Nakamura Shin

机构信息

Life Science Laboratory, Analytical and Measuring Instruments Division, Shimadzu Corporation, Kyoto 604-8511, Japan.

出版信息

Anal Chim Acta. 2008 Apr 7;612(2):218-25. doi: 10.1016/j.aca.2008.02.023. Epub 2008 Feb 16.

Abstract

Basic control operations were successfully performed on an aqueous droplet using both magnetic and electrostatic forces. In our droplet-based microfluidics, magnetic beads were incorporated in an aqueous droplet as a force mediator. This report describes droplet anchoring and separation of the beads from the droplet using a combination of magnetic and electrostatic forces. When an aqueous droplet is placed in an oil-filled reservoir, the droplet sinks to the bottom, under which an electrode had been placed. The droplet was adsorbed (or anchored) to the bottom surface on the electrode when a DC voltage was applied to the electrode. The magnetic beads were removed with magnetic force after the droplet had been anchored. Surfactant addition into droplet solution was very effective for the elimination of electric charge, which resulted in the stable adsorption of a droplet to hydrophobic substrate under an applied voltage of DC 0.5-3 kV. In a sequential process, small volume of aqueous liquid was successfully transferred using both magnetic and electrostatic forces.

摘要

利用磁力和静电力成功地对水滴进行了基本控制操作。在我们基于液滴的微流控技术中,磁珠作为力的介导物被引入到水滴中。本报告描述了利用磁力和静电力相结合的方法实现液滴固定以及磁珠与液滴的分离。当一个水滴放置在充满油的储液器中时,水滴会下沉到底部,底部放置了一个电极。当向电极施加直流电压时,水滴会吸附(或固定)在电极的底表面。在水滴固定后,用磁力去除磁珠。向液滴溶液中添加表面活性剂对于消除电荷非常有效,这使得在0.5 - 3 kV的直流施加电压下,液滴能够稳定地吸附到疏水基底上。在一个连续的过程中,利用磁力和静电力成功地转移了少量的水性液体。

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