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Surface Textured Polymer Fibers for Microfluidics

机译:用于微流体的表面纹理化聚合物纤维

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摘要

This article introduces surface textured polymer fibers as a new platform for the fabrication of affordable microfluidic devices. Fibers are produced tens of meters-long at a time and comprise 20 continuous and ordered channels (equilateral triangle grooves with side lengths as small as 30 micrometers) on their surfaces. Extreme anisotropic spreading behavior due to capillary action along the grooves of fibers is observed after surface modification with polydo-pamine (PDA). These flexible fibers can be fixed on any surface-independent of its material and shape-to form three-dimensional arrays, which spontaneously spread liquid on predefined paths without the need for external pumps or actuators. Surface textured fibers offer high-throughput fabrication of complex open microfluidic channel geometries, which is challenging to achieve using current photolithography-based techniques. Several microfluidic systems are designed and prepared on either planar or 3D surfaces to demonstrate outstanding capability of the fiber arrays in control of fluid flow in both vertical and lateral directions. Surface textured fibers are well suited to the fabrication of flexible, robust, lightweight, and affordable microfluidic devices, which expand the role of microfluidics in a scope of fields including drug discovery, medical diagnostics, and monitoring food and water quality.
机译:本文介绍了表面纹理化的聚合物纤维,作为制造可负担的微流控设备的新平台。纤维一次生产数十米长,并在其表面上包含20个连续且有序的通道(边长为30微米的等边三角形凹槽)。在用聚多巴胺(PDA)进行表面改性后,观察到由于沿纤维沟槽的毛细管作用而导致的极端各向异性扩散行为。这些柔性纤维可以固定在任何与材料和形状无关的表面上,以形成三维阵列,该阵列可在预定路径上自发散布液体,而无需外部泵或致动器。表面纹理化纤维可提供复杂的开放微流体通道几何形状的高通量制造,而使用当前基于光刻的技术很难实现。在平面或3D表面上设计并准备了几种微流体系统,以展示纤维阵列在控制垂直和横向流体流动方面的出色能力。表面织构纤维非常适合于制造柔性,坚固,轻便且价格适中的微流体装置,从而扩大了微流体在包括药物发现,医学诊断以及食品和水质监测等领域的作用。

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  • 来源
    《Advanced Functional Materials 》 |2014年第29期| 4569-4576| 共8页
  • 作者单位

    UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology Bilkent University 06800, Ankara, Turkey;

    UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology Bilkent University 06800, Ankara, Turkey;

    UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology Bilkent University 06800, Ankara, Turkey;

    UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology Bilkent University 06800, Ankara, Turkey;

    UNAM-National Nanotechnology Research Center and Institute of Materials Science and Nanotechnology Bilkent University 06800, Ankara, Turkey,Department of Physics Bilkent University 06800, Ankara, Turkey;

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