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使用聚二甲基硅氧烷/聚合物胶带复合材料快速制作微流控系统原型。

Rapid prototyping of microfluidic systems using a PDMS/polymer tape composite.

作者信息

Kim Jungkyu, Surapaneni Rajesh, Gale Bruce K

机构信息

Department of Bioengineering, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Lab Chip. 2009 May 7;9(9):1290-3. doi: 10.1039/b818389a. Epub 2009 Feb 10.

Abstract

Rapid prototyping of microfluidic systems using a combination of double-sided tape and PDMS (polydimethylsiloxane) is introduced. PDMS is typically difficult to bond using adhesive tapes due to its hydrophobic nature and low surface energy. For this reason, PDMS is not compatible with the xurography method, which uses a knife plotter and various adhesive coated polymer tapes. To solve these problems, a PDMS/tape composite was developed and demonstrated in microfluidic applications. The PDMS/tape composite was created by spinning it to make a thin layer of PDMS over double-sided tape. Then the PDMS/tape composite was patterned to create channels using xurography, and bonded to a PDMS slab. After removing the backing paper from the tape, a complete microfluidic system could be created by placing the construct onto nearly any substrate; including glass, plastic or metal-coated glass/silicon substrates. The bond strength was shown to be sufficient for the pressures that occur in typical microfluidic channels used for chemical or biological analysis. This method was demonstrated in three applications: standard microfluidic channels and reactors, a microfluidic system with an integrated membrane, and an electrochemical biosensor. The PDMS/tape composite rapid prototyping technique provides a fast and cost effective fabrication method and can provide easy integration of microfluidic channels with sensors and other components without the need for a cleanroom facility.

摘要

介绍了一种使用双面胶带和聚二甲基硅氧烷(PDMS)相结合的微流控系统快速成型方法。由于PDMS具有疏水性和低表面能,通常很难用胶带进行粘接。因此,PDMS与使用刻刀绘图仪和各种涂有粘合剂的聚合物胶带的xurography方法不兼容。为了解决这些问题,开发了一种PDMS/胶带复合材料,并在微流控应用中进行了演示。通过在双面胶带上旋涂PDMS以形成薄层来制备PDMS/胶带复合材料。然后,使用xurography对PDMS/胶带复合材料进行图案化以创建通道,并将其与PDMS平板粘接。从胶带上取下衬纸后,将该结构放置在几乎任何基材上,包括玻璃、塑料或金属涂层的玻璃/硅基材,即可创建完整的微流控系统。结果表明,对于化学或生物分析中典型微流控通道中出现的压力,该粘接强度足够。该方法在三种应用中得到了验证:标准微流控通道和反应器、具有集成膜的微流控系统以及电化学生物传感器。PDMS/胶带复合材料快速成型技术提供了一种快速且经济高效的制造方法,并且无需洁净室设施即可轻松将微流控通道与传感器及其他组件集成。

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