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3D printing: an emerging tool for novel microfluidics and lab-on-a-chip applications

机译:3D打印:一种用于新型微流控和芯片实验室应用的新兴工具

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In the past few years, 3D printing technology has witnessed an explosive growth, penetrating various aspects of our lives. Current best-in-class 3D printers can fabricate micrometer scale objects, which has made fabrication of microfluidic devices possible. The highest achievable resolution is already at nanometer scale, which is continuing to drop. Since geometric complexity is not a concern for 3D printing, novel 3D microfluidics and lab-on-a-chip systems that are otherwise impossible to produce with traditional 2D microfabrication technology have started to emerge in recent years. In this review, we first introduce the basics of 3D printing technology for the microfluidic community and then summarize its emerging applications in creating novel microfluidic devices. We foresee widespread utilization of 3D printing for future developments in microfluidic engineering and lab-on-a-chip technology.
机译:在过去的几年中,3D打印技术见证了爆炸性的增长,渗透到我们生活的各个方面。当前最好的3D打印机可以制造微米级的物体,这使微流体设备的制造成为可能。可以达到的最高分辨率已经达到纳米级,并且还在不断下降。由于几何复杂度不是3D打印的关注点,因此近年来新兴的3D微流控技术和芯片实验室系统无法用传统的2D微加工技术生产。在本文中,我们首先介绍了微流体社区的3D打印技术基础,然后总结了其在创建新型微流体设备中的新兴应用。我们预见3D打印将广泛用于微流体工程和芯片实验室技术的未来发展。

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