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微球悬浮液的接触角滞后。

Contact angle hysteresis of microbead suspensions.

机构信息

Micro and Nano-scale Transport Laboratory, Department of Mechanical Engineering, University of Alberta at Edmonton, Edmonton, Canada T6G 2G8.

出版信息

Langmuir. 2010 Nov 16;26(22):17082-9. doi: 10.1021/la1025526. Epub 2010 Oct 1.

Abstract

Microbead suspensions are often used in microfluidic devices for transporting biomolecules. An experimental investigation on the wettability of microbead suspension is presented in this study. The variation in the surface tension and the equilibrium contact angle with the change in the volume fraction of the microbead is presented here. The surface tension of the microbead suspension is measured with the pendant drop technique, whereas the dynamic contact angle measurements, i.e., advancing and receding contact angles, are measured with the sessile drop technique. An equilibrium contact angle of a suspension with particular volume fraction is determined by computing an average over the measured advancing and receding contact angles. It is observed that the surface tension and the equilibrium contact angle determined from advancing and receding contact angles vary with the magnitude of the microbeads volume fraction in the suspension. A decrease in the surface tension with an increase in the volume fraction of the microbead suspension is observed. The advancement and the recession in contact line for dynamic contact angle measurements are achieved with the motorized dosing mechanism. For microbead suspensions, the advancement of the contact line is faster as compared to the recession of the contact line for the same flow rate. The presence of microbeads assists in the advancement and the recession of the contact line of the suspension. A decrease in the equilibrium contact angles with an increase in the microbead suspension volume fraction is observed. Inclusion of microbeads in the suspension increases the wetting capability for the considered combination of the microbead suspension and substrate. Finally, empirical correlations for the surface tension and the contact angle of the suspension as a function of microbead volume fraction are proposed. Such correlations can readily be used to develop mechanistic models for the capillary transport of microbead suspensions related to LOC applications.

摘要

微珠悬浮液常用于微流控设备中输送生物分子。本研究对微珠悬浮液的润湿性进行了实验研究。本文介绍了表面张力随微珠体积分数变化的变化和平衡接触角。采用悬滴法测量微珠悬浮液的表面张力,采用静滴法测量动态接触角,即前进接触角和后退接触角。通过计算测量的前进和后退接触角的平均值来确定具有特定体积分数的悬浮液的平衡接触角。结果表明,前进和后退接触角确定的表面张力和平衡接触角随悬浮液中微珠体积分数的大小而变化。观察到随着微珠悬浮液体积分数的增加,表面张力降低。通过电动进样机构实现动态接触角测量的接触线前进和后退。对于微珠悬浮液,与相同流速的接触线后退相比,接触线前进更快。微珠的存在有助于悬浮液接触线的前进和后退。随着微珠悬浮液体积分数的增加,平衡接触角减小。观察到悬浮液中微珠的存在增加了考虑的微珠悬浮液和基底组合的润湿性。最后,提出了悬浮液表面张力和接触角与微珠体积分数关系的经验关联式。这些相关性可以很容易地用于开发与 LOC 应用相关的微珠悬浮液的毛细输送的机理模型。

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