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Fast fabrication of microfluidic devices using a low-cost prototyping method

机译:使用低成本原型方法快速制造微流控设备

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摘要

Conventional ways to produce microfluidic devices cost a lot due to the requirements for cleanroom environments and expensive equipment, which prevents the wider applications of microfluidics in academia and in industry. In this paper, a dry film photoresist was utilized in a simple way to reduce the fabrication cost of microfluidic masters. Thus, a fast prototyping and fabrication of microstructures in polydimethylsiloxane microchips through a replica molding technology was achieved in a low-cost setting within 2.5 h. Subsequently, major manufacturing conditions were optimized to acquire well-resolved microfluidic molds, and the replicated microchips were validated to be of good performance. A T-junction channel microchip was fabricated by using a dry film master to generate water droplets of uniform target size. Meanwhile, a gated injection of fluorescein sodium and a contactless conductivity detection of Na+ were both performed in a crosslink channel microchip via capillary electrophoresis, in other words, this fast prototyping and fabrication method would be an efficient, economical way to embody structural design into microfluidic chips for various applications.
机译:由于对洁净室环境和昂贵设备的需求,常规的生产微流体装置的方法花费很多,这阻止了微流体在学术界和工业中的广泛应用。在本文中,以简单的方式利用干膜光刻胶来降低微流控母版的制造成本。因此,在2.5小时内以低成本设置,通过复制成型技术实现了聚二甲基硅氧烷微芯片中微结构的快速原型制作和制造。随后,优化了主要制造条件以获取分辨率良好的微流体模具,并验证了复制的微芯片具有良好的性能。通过使用干膜原版制作T形结通道微芯片,以产生目标大小均一的水滴。同时,通过毛细管电泳在交联通道微芯片中进行荧光素钠的门控注入和Na +的非接触电导检测,换句话说,这种快速的原型设计和制造方法将是一种将结构设计体现为微流体的有效,经济的方法。适用于各种应用的芯片。

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