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直矩形微通道中按粒径分离粘弹性颗粒:深入理解的参数研究。

Viscoelastic Separation of Particles by Size in Straight Rectangular Microchannels: A Parametric Study for a Refined Understanding.

机构信息

Department of Mechanical Engineering, Clemson University , Clemson, South Carolina 29634-0921, United States.

出版信息

Anal Chem. 2016 Dec 20;88(24):12303-12309. doi: 10.1021/acs.analchem.6b03501. Epub 2016 Dec 1.

Abstract

Microfluidic separation of particles has been implemented using a variety of force fields. We demonstrate in this work a continuous sheath-free separation of both a binary and a ternary particle mixture in viscoelastic polymer solutions through straight rectangular microchannels. This label-free separation arises from the flow-induced lift force that directs particles toward size-sensitive focusing positions in a high width/height channel. It is found to be a strong function of multiple experimental parameters, which is systematically investigated in terms of dimensionless numbers. We propose to explain the observed lateral shifting of particle focusing positions as a result of the competing center- (due to fluid elasticity effects) and wall- (due to fluid elasticity and shear thinning effects) directed elastic lift forces. The inertial lift force comes into effect at relatively high flow rates, which appears to reduce the separation efficiency and purity in our experiments.

摘要

微流控技术已经采用了多种力场来实现粒子分离。在本工作中,我们通过直矩形微通道展示了在粘弹性聚合物溶液中二元和三元粒子混合物的连续无鞘自由分离。这种无标记分离源于流致升力,该力将粒子引导至高宽高比通道中对尺寸敏感的聚焦位置。发现它强烈依赖于多个实验参数,并从无量纲数的角度对其进行了系统研究。我们提出将观察到的粒子聚焦位置的横向偏移解释为中心(由于流体弹性效应)和壁(由于流体弹性和剪切稀化效应)指向的弹性升力之间的竞争结果。惯性升力在相对较高的流速下才起作用,这似乎降低了我们实验中的分离效率和纯度。

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