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Microfluidic motion for a direct investigation of solvent interactions with PDMS microchannels

机译:微流体运动可直接研究溶剂与PDMS微通道的相互作用

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摘要

Solid surface/liquid interactions play an important role in microfluidics and particularly in manipulation of films, drops and bubbles, a basic requirement for a number of lab-on-chip applications. The behavior of solvents in coated microchannels is difficult to be predicted considering theories; therefore, experimental methods able to estimate the properties at the interface in real time and during the operational regime are amenable. Here, we propose to use an experimental setup to evaluate the effective dynamics of solvents inside PDMS microchannels. The influence of the solvent properties as well as of the channel wall's wettability on the fluid movements was evaluated. Modification of the channel properties was achieved by introducing Teflon coatings that allow producing stable hydrophobic micro-channel walls. The results were fitted according to Wash-burn-type power-law and compared with theoretical calculations of the parameter β that expresses the dependence of capillary dynamics on surface tension γ, liquid viscosity η, contact angles 6 and the hydraulic radius R_H. A comparison between the calculated and the experimental values reveled that parameters other than the contemplated ones influenced the measurements. The main parameter that affects the flow of solvents such as water, methanol ethanol, dimethylformamide, acetonitrile and acetone was found to be the γlη ratio. Considering these results, the investigation tool described here is believed to be promising to predict the dynamics of common organic solvents inside integrated functional fluidic devices and to accurately control solvent flow, particularly in capillary-driven pumpless systems, a basic requirement for widening the application range of PDMS lab-on-chip devices.
机译:固体表面/液体相互作用在微流体中,特别是在薄膜,液滴和气泡的操纵中起着重要作用,这是许多芯片实验室应用的基本要求。考虑到理论,很难预测涂层微通道中溶剂的行为。因此,能够实时和在操作过程中估计界面性质的实​​验方法是可行的。在这里,我们建议使用实验装置来评估PDMS微通道内部溶剂的有效动力学。评估了溶剂性能以及通道壁的润湿性对流体运动的影响。通过引入允许产生稳定的疏水性微通道壁的特氟龙涂层来实现通道性能的改变。结果根据Wash-burn-type幂律拟合,并与参数β的理论计算进行比较,该参数表示毛细管动力学对表面张力γ,液体粘度η,接触角6和水力半径R_H的依赖性。计算值与实验值之间的比较表明,除预期参数以外的其他参数会影响测量。发现影响诸如水,甲醇乙醇,二甲基甲酰胺,乙腈和丙酮之类的溶剂的流动的主要参数是γlη比。考虑到这些结果,这里描述的研究工具被认为有望预测集成功能流体设备内部常见有机溶剂的动力学并准确控制溶剂流量,特别是在毛细管驱动的无泵系统中,这是扩大应用范围的基本要求PDMS芯片实验室设备。

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  • 来源
    《Microfluidics and nanofluidics》 |2012年第3期|p.399-409|共11页
  • 作者单位

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy,National Nanotechnology Laboratory,CNR-Istituto Nanoscienze, c/o Dipartimento di Fisica,Universita La Sapienza, Rome, Italy,Dip. Ingegneria Innovazione, Universita del Salento,via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy;

    National Nanotechnology Laboratory, CNR-Istituto Nanoscienze, U.O.S. Lecce-Distretto Tecnologico ISUFI,Universita del Salento, via Arnesano, 73100 Lecce, Italy,National Nanotechnology Laboratory,CNR-Istituto Nanoscienze, c/o Dipartimento di Fisica,Universita La Sapienza, Rome, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microfluidics; PDMS microchannels; teflon coating; washbum power law;

    机译:微流体PDMS微通道;铁氟龙涂层;洗脸功率法;

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