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Piezoelectric-driven droplet impact printing with an interchangeable microfluidic cartridge

机译:压电驱动的液滴冲击式打印可互换的微流控墨盒

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摘要

Microfluidic impact printing has been recently introduced, utilizing its nature of simple device architecture, low cost, non-contamination, and scalable multiplexability and high throughput. In this paper, we have introduced an impact-based droplet printing platform utilizing a simple plug-and-play microfluidic cartridge driven by piezoelectric actuators. Such a customizable printing system allows for ultrafine control of droplet volume from picoliters (∼23 pl) to nanoliters (∼10 nl), a 500 fold variation. The high flexibility of droplet generation can be simply achieved by controlling the magnitude of actuation (e.g., driving voltage) and the waveform shape of actuation pulses, in addition to nozzle size restrictions. Detailed printing characterizations on these parameters have been conducted consecutively. A multiplexed impact printing system has been prototyped and demonstrated to provide the functions of single-droplet jetting and droplet multiplexing as well as concentration gradient generation. Moreover, a generic biological assay has also been tested and validated on this printing platform. Therefore, the microfluidic droplet printing system could be of potential value to establish multiplexed micro reactors for high-throughput life science applications.
机译:最近,利用其简单的设备架构,低成本,无污染,可扩展的可复用性和高吞吐量的特性,引入了微流体冲击印刷。在本文中,我们介绍了一种基于碰撞的液滴打印平台,该平台利用由压电致动器驱动的简单即插即用微流体墨盒。这种可定制的打印系统可以将液滴体积从皮升(〜23 pl)到纳升(〜10 nl)进行超精细控制,变化幅度为500倍。除了喷嘴尺寸的限制之外,通过控制致动的大小(例如,驱动电压)和致动脉冲的波形形状,可以简单地实现液滴产生的高灵活性。这些参数的详细打印特性已连续进行。多重冲击印刷系统已被原型化并证明可提供单液滴喷射和液滴多路复用以及浓度梯度生成的功能。此外,还可以在该打印平台上测试和验证通用的生物学检测方法。因此,微流体液滴打印系统可能具有潜在的价值,可以建立用于高通量生命科学应用的多路复用微型反应器。

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