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Microfluidic plastic capillaries on silicon substrates: a new inexpensive technology for bioanalysis chips

机译:硅基板上的微流体塑料毛细管:一种用于生物分析芯片的廉价新技术

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This paper reports the fabrication and testing of large-volume plastic capillaries and other fluidic components using a batch lithographic process. These components are fabricated on planar substrates using a simple three mask, low-temperature, IC compatible process that allows the integration of microfluidic and circuit elements. The microfluidic elements are conformal to the substrate thus overcoming the planarization required by bonded structures. In addition they have relatively large volumes in contrast to polysilicon based devices and are completely sealed in a batch manner overcoming the limitations of micromoulding. The capillaries are also optically transparent and can range from 0.5 /spl mu/m to 100 /spl mu/m in height. The fluidic components have been fabricated on top of regular silicon, glass, and polycarbonate wafers. Mechanical and biocompatibility tests indicate that the plastic components are suitable for DNA analysis instrumentation.
机译:本文报告了使用批量光刻工艺制造和测试大容量塑料毛细管和其他流体组件的过程。这些组件使用简单的三掩模,低温,IC兼容工艺在平面基板上制造,该工艺允许集成微流体和电路元件。微流体元件与基底共形,因此克服了键合结构所需的平面化。另外,与基于多晶硅的器件相比,它们具有相对较大的体积,并且以批量方式完全密封,克服了微模制的局限性。毛细管也是光学透明的,高度范围可以从0.5 / spl mu / m到100 / spl mu / m。流体组件已在常规硅,玻璃和聚碳酸酯晶片的顶部制造。机械和生物相容性测试表明,塑料组件适合用于DNA分析仪器。

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