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Rapid and Inexpensive Fabrication of Multi-Depth Microfluidic Device using High-Resolution LCD Stereolithographic 3D Printing

机译:使用高分辨率LCD立体化3D打印的多深度微流体装置的快速和便宜的制造

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摘要

With the dramatic increment of complexity, more microfluidic devices require 3D structures, such as multi-depth and -layer channels. The traditional multi-step photolithography is time-consuming and labor-intensive and also requires precise alignment during the fabrication of microfluidic devices. Here, we present an inexpensive, single-step, and rapid fabrication method for multi-depth microfluidic devices using a high-resolution liquid crystal display (LCD) stereolithographic (SLA) three-dimensional (3D) printing system. With the pixel size down to 47.25 μm, the feature resolutions in the horizontal and vertical directions are 150 μm and 50 μm, respectively. The multi-depth molds were successfully printed at the same time and the multi-depth features were transferred properly to the polydimethylsiloxane (PDMS) having multi-depth channels via soft lithography. A flow-focusing droplet generator with a multi-depth channel was fabricated using the presented 3D printing method. Experimental results show that the multi-depth channel could manipulate the morphology and size of droplets, which is desired for many engineering applications. Taken together, LCD SLA 3D printing is an excellent alternative method to the multi-step photolithography for the fabrication of multi-depth microfluidic devices. Taking the advantages of its controllability, cost-effectiveness, and acceptable resolution, LCD SLA 3D printing can have a great potential to fabricate 3D microfluidic devices.
机译:随着复杂性的显着的增加,多个微流体装置需要3D结构,如多深度和i-层信道。传统的多步骤光刻是费时和劳动密集的,并且还需要微流体装置的制造期间精确地对准。这里,我们提出一种廉价的,单步,和快速制造方法用于使用高分辨率的液晶显示器(LCD)立体平版印刷(SLA)的三维(3D)印刷系统多深度的微流体装置。与像素尺寸降低到47.25微米,在水平和垂直方向上的特征的分辨率分别为150微米,50微米。多深度模具被成功地打印在同一时间和多深度特征进行适当地转移到通过软光刻具有多深度信道的聚二甲基硅氧烷(PDMS)。与多深度信道A流动聚焦液滴发生器是使用所呈现的三维印刷方法制造。实验结果表明,多深度信道可以操纵液滴的形态和尺寸,这是所期望的许多工程应用。两者合计,LCD SLA 3D印刷是一种很好的替代方法为多深度的微流体器件的制造多步光刻。以它的可控性,成本效益,和可接受的分辨率的优点,LCD SLA 3D印刷可有很大的潜力来制造三维微流体装置。

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