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采用不对称纳米孔诱导直流介电泳方法对油滴进行操控和分离。

Manipulation and separation of oil droplets by using asymmetric nano-orifice induced DC dielectrophoretic method.

机构信息

Department of Mechanical and Mechatronics Engineering University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

Department of Mechanical and Mechatronics Engineering University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

J Colloid Interface Sci. 2018 Feb 15;512:389-397. doi: 10.1016/j.jcis.2017.10.073. Epub 2017 Oct 20.

Abstract

HYPOTHESIS

Emulsion droplets are versatile tools in chemical and biological fields and the separation of emulsion droplets is one of the most crucial steps in research and industry.

EXPERIMENTS

This work developed a nano-orifice based DC dielectrophoretic (DEP) system for the sorting of oil-in-water emulsion droplets by size and content in a microchannel. Then, the size-dependent separation of oil droplets was conducted and verified by the prediction of theoretical simulation. In addition, by selecting the suspending solution with a specific electrical conductivity, the oil droplets with similar sizes but different contents were separated based on their opposite DEP behaviors.

FINDINGS

The size-dependent separation of smaller silicone oil droplets (7.5 and 11 µm in diameter) with a high separation resolution, i.e., size difference of only 3.5 µm was achieved and showed good agreement with the simulation results. The positive and negative DEP behaviors of the droplets varying with the electrical conductivity of the suspending solution were discussed and different types of droplets of similar sizes but different contents were separated. This paper presents the DC-DEP method based sorting of emulsion droplets by size and content in nanofluidic chip for the first time, providing a platform to manipulate individual emulsion droplet.

摘要

假设

乳液滴在化学和生物领域是多功能的工具,乳液滴的分离是研究和工业中最关键的步骤之一。

实验

本工作开发了一种基于纳米孔的直流介电泳(DEP)系统,用于在微通道中按大小和含量对油水乳液滴进行分类。然后,通过理论模拟的预测对油滴的尺寸依赖性分离进行了验证。此外,通过选择具有特定电导率的悬浮液,可以根据油滴的相反 DEP 行为分离具有相似尺寸但不同含量的油滴。

发现

实现了具有高分离分辨率(直径仅相差 3.5μm)的较小硅油滴(7.5 和 11μm)的尺寸依赖性分离,并且与模拟结果吻合良好。讨论了随悬浮液电导率变化的液滴的正、负 DEP 行为,并分离了具有相似尺寸但不同含量的不同类型的液滴。本文首次提出了在纳流控芯片中基于大小和含量对乳液滴进行直流-DEP 分选的方法,为操控单个乳液滴提供了一个平台。

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