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首页> 外文期刊>Sensors and Actuators >Microfluidic valves based on superhydrophobic nanostructures and switchable thermosensitive surface for lab-on-a-chip (LOC) systems
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Microfluidic valves based on superhydrophobic nanostructures and switchable thermosensitive surface for lab-on-a-chip (LOC) systems

机译:基于超疏水纳米结构和可切换热敏表面的微流体阀,用于芯片实验室(LOC)系统

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摘要

This paper describes a novel valve concept using a nanostructured functional polymer surface. To prove the concept, two fully integrated microfluidic valves, one with a superhydrophobic polymer surface and the other with a switchable, thermosensitive polymer surface have been fabricated and tested. The passive valve with the superhydrophobic polymer surface selectively inhibits the flow of water-based reagents and passes aqueous solutions containing surfactants. In case of the thermosensitive valve, the switchable polymer surface becomes hydrophobic when heated to temperatures exceeding 65 ℃, thus inhibiting the flow of water and becomes hydrophilic at room temperature, thus allowing the flow of water. The microchannels are fabricated by standard photolithography and wet etching techniques. The polymer surface for both the valves is fabricated using the layer-by-layer (LBL) deposition technique, in which multiple layers of polyelectrolytes are coated on a channel wall followed by silica nanoparticle treatment. For the thermosensitive valve, the polymer surface is further coated with the thermosensitive polymer poly(7V-isopropylacrylamide) (PNIPAAm). The fabricated microfluidic valve was tested with liquids flowing in the microchannels under capillary action. It is shown that the valve selectively regulates the flow of test samples.
机译:本文介绍了一种使用纳米结构功能聚合物表面的新型阀门概念。为了证明这一概念,已经制造并测试了两个完全集成的微流体阀,一个具有超疏水聚合物表面,另一个具有可切换的热敏聚合物表面。具有超疏水性聚合物表面的被动阀选择性地抑制水基试剂的流动,并使包含表面活性剂的水溶液通过。对于热敏阀,当加热到超过65℃的温度时,可切换的聚合物表面变为疏水性,从而抑制了水的流动,​​而在室温下变为亲水性的,从而允许水的流动。通过标准光刻和湿蚀刻技术来制造微通道。使用逐层(LBL)沉积技术制造两个阀门的聚合物表面,其中多层聚电解质涂覆在通道壁上,然后进行二氧化硅纳米粒子处理。对于热敏阀,聚合物表面还涂有热敏聚合物聚(7V-异丙基丙烯酰胺)(PNIPAAm)。用在毛细管作用下在微通道中流动的液体测试了所制造的微流体阀。结果表明,该阀有选择地调节测试样品的流量。

著录项

  • 来源
    《Sensors and Actuators》 |2008年第2期|431-438|共8页
  • 作者单位

    Department of Electrical Engineering, University of Central Florida, Orlando, FL 32816-2450, USA;

    Nanoscience Technology Center, University of Central Florida, Orlando, FL 32826-3271, USA Department of Chemistry, University of Central Florida, Orlando, FL 32826-2366, USA;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816-2450, USA;

    Nanoscience Technology Center, University of Central Florida, Orlando, FL 32826-3271, USA Department of Chemistry, University of Central Florida, Orlando, FL 32826-2366, USA;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816-2450, USA;

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

    passive valve; layer-by-layer (LBL) deposition; nanoparticles; superhydrophobic; thermosensitive polymer;

    机译:被动阀逐层(LBL)沉积;纳米粒子超疏水热敏聚合物;

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