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An on-demand bench-top fabrication process for fluidic chips based on cross-diffusion through photopolymerization

机译:基于光聚合的交叉扩散的流体芯片按需台式制造工艺

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摘要

In this paper, we propose a novel approach to fabricate fluidic chips. The method utilizes molecular cross-diffusion, induced by photopolymerization under ultraviolet (UV) irradiation in a channel pattern, to form the channel structures. During channel structure formation, the photopolymer layer still contains many uncured molecules. Subsequently, a top substrate is attached to the channel structure under adequate pressure, and the entire chip is homogenously irradiated by UV light. Immediately thereafter, a sufficiently sealed fluidic chip is formed. Using this fabrication process, the channel pattern of a chip can be designed quickly by a computer as binary images, and practical chips can be produced on demand at a benchtop, instead of awaiting production in specialized factories.
机译:在本文中,我们提出了一种制造流体芯片的新方法。该方法利用分子交叉扩散,通过在通道图案中的紫外线(UV)照射下的光聚合诱导,形成通道结构。在通道结构形成期间,光聚合物层仍然含有许多未固化分子。随后,在足够的压力下,顶部基板连接到通道结构,并且通过UV光均匀地照射整个芯片。之后,立即形成足够密封的流体芯片。使用该制造过程,芯片的信道图案可以通过计算机快速设计为二进制图像,并且可以在台面上按需生产实用芯片,而不是在专业工厂中等待生产。

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