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Fully inkjet-printed microfluidics: a solution to low-cost rapid three-dimensional microfluidics fabrication with numerous electrical and sensing applications

机译:完全喷墨印刷的微流体:具有低成本的快速三维微流体制造的解决方案,具有众多的电气和传感应用

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As the needs for low-cost rapidly-produced microfluidics are growing with the trend of Lab-on-a-Chip and distributed healthcare, the fully inkjet-printing of microfluidics can be a solution to it with numerous potential electrical and sensing applications. Inkjet-printing is an additive manufacturing technique featuring no material waste and a low equipment cost. Moreover, similar to other additive manufacturing techniques, inkjet-printing is easy to learn and has a high fabrication speed, while it offers generally a great planar resolution down to below 20 μm and enables flexible designs due to its inherent thin film deposition capabilities. Due to the thin film feature, the printed objects also usually obtain a high vertical resolution (such as 4.6 μm). This paper introduces a low-cost rapid three-dimensional fabrication process of microfluidics, that relies entirely on an inkjet-printer based single platform and can be implemented directly on top of virtually any substrates.
机译:随着片上实验室和分布式医疗保健的趋势,对低成本快速生产的微流体的需求不断增长,对微流体进行完全喷墨打印可以解决其潜在的电气和传感应用问题。喷墨打印是一种增材制造技术,具有无材料浪费和低设备成本的特点。此外,类似于其他增材制造技术,喷墨打印易于学习且具有较高的制造速度,而喷墨打印通常可提供低至20μm以下的出色平面分辨率,并由于其固有的薄膜沉积能力而使设计灵活。由于具有薄膜特征,因此打印对象通常还可以获得较高的垂直分辨率(例如4.6μm)。本文介绍了一种微流体的低成本快速三维制造工艺,该工艺完全依赖于基于喷墨打印机的单一平台,并且可以直接在几乎任何基板之上实现。

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