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Indirect fabrication of versatile 3D microfluidic device by a rotating plate combined 3D printing system

机译:旋转板组合3D打印系统间接制造多功能3D微流体装置

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摘要

In the past decade, 3D-printing technology has been applied in the field of microfluidics to fabricate microfluidic devices for wide-ranging areas of study including chemistry, biology, medicine, and others. However, these methods face several limitations such as insufficient resolution and long fabrication time. In this study, versatile microfluidic devices with different functions were indirectly fabricated by a rapid sacrificial template printing process using a photocurable fluoropolymer with chemical durability. The Pluronic (R) F127 hydrogel as a sacrificial template was rapidly patterned on substrates by a non-lithographic printing process using a computer-controlled 3D-printing system. Viscous fluoropolymer was cast on the non-deformable template that was consequently removed by applying heat and negative pressure after UV curing. The chemical-resistant and transparent microchannels were oblate-hemispherical on the cross section. They were tested by performing a heterogeneous catalytic reaction as well as a photochemical reaction. The microchannels with controlled heights were devised to induce convection for functioning as a micromixer with asymmetric flows. Moreover, upon printing the Pluronic (R) F127 on both sides of the PFPE (perfluoropolyether-urethane dimethacrylate) membrane substrate, the 3D hybrid microfluidic device was embedded with a permeable membrane between the lower and upper channels, which is useful for gas-liquid chemical processes.
机译:在过去的十年中,3D印刷技术已应用于微流体领域,以制造用于宽范围的研究区域的微流体装置,包括化学,生物学,医药等。然而,这些方法面临几种限制,例如分辨率不足和长时间的制造时间。在该研究中,通过使用具有化学耐久性的光固化含氟聚合物的快速牺牲模板印刷方法间接地制造具有不同功能的多功能微流体装置。使用计算机控制的3D印刷系统,通过非平版印刷工艺在基板上迅速地图案化PluronicF127水凝胶。在不可变形的模板上浇铸粘性含氟聚合物,从而通过在UV固化后施加热和负压来除去的不可变形模板。耐化学和透明的微通道在横截面上是扁平的半球形。通过进行异质催化反应以及光化学反应来测试它们。设计具有受控高度的微通道,以引起与具有不对称流量的微混合器的功能的对流。另外,在PFPE(全氟聚醚 - 氨基甲酸酯二甲基丙烯酸酯)膜底物的两侧印刷PluronicF127时,将3D杂化微流体装置嵌入下部和上通道之间的可渗透膜,这对于气液可用化学过程。

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  • 来源
    《RSC Advances》 |2018年第66期|共7页
  • 作者单位

    Pohang Univ Sci &

    Technol POSTECH Dept Mech Engn Pohang South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Pohang South Korea;

    Korea Adv Inst Sci &

    Technol Dept Mat Sci &

    Engn Daejeon South Korea;

    Pukyong Natl Univ Dept Chem Engn Busan South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Mech Engn Pohang South Korea;

    Kyungpook Natl Univ Dept Polymer Sci &

    Engn Daegu South Korea;

    Korea Adv Inst Sci &

    Technol Dept Mat Sci &

    Engn Daejeon South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Chem Engn Pohang South Korea;

    Pohang Univ Sci &

    Technol POSTECH Dept Mech Engn Pohang South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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