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Electrochemically actuated passive stop-go microvalves for flow control in microfluidic systems

机译:电化学驱动的被动截​​止微阀,用于微流体系统中的流量控制

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摘要

Flow manipulation is a critical expected capacity for integrated microsystems. One way to realize low cost devices is to take advantage of capillary forces for fluid movement. In such systems, flow manipulation should be achieved with easily operated, effortlessly integrated valves. One advantageous method to operate sensors and actuators in microsystems is electrochemistry. Here, the design, fabrication and implementation of low voltage electrochemically actuated passive stop-go microvalves for on-off fluidic manipulations in microfluidic systems are reported. Two closely spaced electrodes (one of which has superhydrophobic surface) were fabricated by screen printing followed by surface structuring in a micro-channel. The fabrication of the superhydrophobic surface (water contact angle (CA) 152°) was performed by selective and controlled solvent-etching of a naturally hydrophobic (CA = 105°) screen printed carbon surface. The process increased the roughness and porosity of the surface that caused the superhydrophobic effect. The superhydrophobic surface of the carbon electrode, in addition to functioning as passive stop valve (PSV), facilitates the flow actuation using low applied voltage avoiding observable electrochemical reactions in aqueous solutions. When a low voltage (~1V) was applied at the carbon electrode against a silver electrode, the flow of such solutions (e.g. 0.01 M phosphate buffer saline solution) that was stopped at the PSV, resumed, crossing the 1 mm pitch of hydrophobic barrier of the PSV in 1 s and reestablishing capillary flow downstream. The low cost and flexibility of fabrication, facile integration and miniaturization, and reproducible performance of such on/off valves make this configuration promising for the development of low cost microfluidic devices for point-of-care diagnostics, food analysis, and environmental monitoring.
机译:流量操纵是集成微系统的关键预期容量。实现低成本设备的一种方法是利用毛细作用力进行流体运动。在这种系统中,应使用易于操作,毫不费力地集成的阀来实现流量操纵。在微系统中操作传感器和致动器的一种有利方法是电化学。在此,报道了用于微流体系统中的开-关流体操纵的低压电化学致动的被动式停停式微阀的设计,制造和实施。通过丝网印刷,然后在微通道中进行表面结构化,制造了两个紧密间隔的电极(其中一个具有超疏水表面)。超疏水表面(水接触角(CA)152°)的制造是通过对自然疏水(CA = 105°)丝网印刷碳表面进行选择性和受控的溶剂蚀刻来完成的。该过程增加了引起超疏水作用的表面的粗糙度和孔隙率。碳电极的超疏水表面除了起被动截止阀(PSV)的作用外,还使用低施加电压来促进流体致动,从而避免了水溶液中可观察到的电化学反应。当在碳电极上施加相对于银电极的低电压(〜1V)时,在PSV处停止的此类溶液(例如0.01 M磷酸盐缓冲盐溶液)的流动重新开始,跨过1mm的疏水屏障1秒钟内PSV下降,并重新建立下游的毛细管流。制造的低成本和灵活性,方便的集成和小型化以及此类开/关阀的可再现性能,使得这种构造对于开发用于即时诊断,食品分析和环境监测的低成本微流体装置很有希望。

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  • 来源
    《Microelectronic Engineering》 |2013年第11期|416-420|共5页
  • 作者单位

    Bioengineering and Bioelectrochemistry Group, Department of Chemical Engineering, Universitaet Rovira i Virgili, Avinguda Pa'isos Catalans 26, 43007 Tarragona, Spain;

    Bioengineering and Bioelectrochemistry Group, Department of Chemical Engineering, Universitaet Rovira i Virgili, Avinguda Pa'isos Catalans 26, 43007 Tarragona, Spain;

    Bioengineering and Bioelectrochemistry Group, Department of Chemical Engineering, Universitaet Rovira i Virgili, Avinguda Pa'isos Catalans 26, 43007 Tarragona, Spain;

    Bioengineering and Bioelectrochemistry Group, Department of Chemical Engineering, Universitaet Rovira i Virgili, Avinguda Pa'isos Catalans 26, 43007 Tarragona, Spain;

    Bioengineering and Bioelectrochemistry Group, Department of Chemical Engineering, Universitaet Rovira i Virgili, Avinguda Pa'isos Catalans 26, 43007 Tarragona, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microfluidics; Fluid control; Passive microvalve; Electrochemically actuated; Superhydrophobic;

    机译:微流体;流体控制;被动微阀;电化学驱动;超疏水;

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