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通过光刻制造的开放式微流控芯片上的电润湿实现数字微滴的驱动。

Actuation of digital micro drops by electrowetting on open microfluidic chips fabricated in photolithography.

作者信息

Ko Hyojin, Lee Jeong Soo, Jung Chan-Hee, Choi Jae-Hak, Kwon Oh-Sun, Shin Kwanwoo

出版信息

J Nanosci Nanotechnol. 2014 Aug;14(8):5894-7. doi: 10.1166/jnn.2014.8440.

Abstract

Basic manipulations of discrete liquid drops on opened microfluidic chips based on electrowetting on dielectrics were described. While most developed microfluidic chips are closed systems equipped with a top plate to cover mechanically and to contact electrically to drop samples, our chips are opened systems with a single plate without any electric contact to drops directly. The chips consist of a linear array of patterned electrodes at 1.8 mm pitch was fabricated on a glass plate coated with thin hydrophobic and dielectric layers by using various methods including photolithography, spin coating and ion sputtering. Several actuations such as lateral oscillation, colliding mergence and translational motion for 3-10 μL water drops have been demonstrated satisfactory. All these kinetic performances of opened chips were similar to those of closed chip systems, indicating superiority of a none-contact method for the transport of drops on opened microfluidic chips actuated by using electrowetting technique.

摘要

描述了基于介电电泳在开放式微流控芯片上对离散液滴进行的基本操作。虽然大多数已开发的微流控芯片是封闭系统,配备有顶板以机械覆盖并与液滴样品进行电接触,但我们的芯片是单板式的开放系统,不直接与液滴进行任何电接触。通过光刻、旋涂和离子溅射等多种方法,在涂有薄疏水层和介电层的玻璃板上制作了间距为1.8 mm的线性阵列图案化电极芯片。已证明对3 - 10 μL水滴进行的几种驱动操作,如横向振荡、碰撞合并和平移运动,效果令人满意。开放式芯片的所有这些动力学性能与封闭式芯片系统相似,表明在利用介电电泳技术驱动的开放式微流控芯片上,非接触式液滴传输方法具有优越性。

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