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Rapid method for design and fabrication of passive micromixers in microfluidic devices using a direct-printing process

机译:使用直接印刷工艺在微流体装置中设计和制造无源微混合器的快速方法

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摘要

We developed a facile and rapid one-step technique for design and fabrication of passive micromixers in microfluidic devices using a direct-printing process. A laser printing mechanism was dexterously adopted to pattern the microchannels with different gray levels using vector graphic software. With the present method, periodically ordered specific bas-relief microstructures can be easily fabricated on transparencies by a simple printing process. The size and shape of the resultant microstructures are determined by the gray level of the graphic software and the resolution of the laser printer. Patterns of specific bas-relief microstructures on the floor of a channel act as obstacles in the flow path for advection mixing, which can be used as efficient mixing elements. The mixing effect of the resultant micromixer in microfluidic devices was evaluated using CCD fluorescence spectroscopy. We found that the mixing performance depends strongly on the gray level values. Under optimal conditions, fast passive mixing with our periodic ordered patterns in microfluidic devices has been achieved at the very early stages of the laminar flow. In addition, fabrication of micromixers using the present versatile technique requires less than an hour. The present method is promising for fabrication of micromixers in microfluidic devices at low cost and without complicated devices and environment, providing a simple solution to mixing problems in the micro-total-analysis-systems field.
机译:我们开发了一种简便,快速的单步技术,用于使用直接打印工艺设计和制造微流控设备中的被动微混合器。灵巧地采用激光打印机制,通过矢量图形软件对具有不同灰度等级的微通道进行图案化。利用本方法,可以通过简单的印刷工艺容易地在透明胶片上制造周期性有序的特定浮雕微结构。最终的微结构的大小和形状由图形软件的灰度和激光打印机的分辨率确定。通道底部特定浮雕微结构的图案在对流混合的流路中充当障碍物,可以用作有效的混合元素。使用CCD荧光光谱法评估所得微混合器在微流体装置中的混合效果。我们发现混合性能在很大程度上取决于灰度值。在最佳条件下,已经在层流的早期阶段以微流体设备实现了我们的周期性有序模式的快速被动混合。另外,使用本发明的通用技术制造微混合器需要少于一个小时。本方法有望以低成本制造微流体装置中的微混合器,而没有复杂的装置和环境,为微总分析系统领域中的混合问题提供一种简单的解决方案。

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