论文标题

像素化学显示器

Pixelated Chemical Displays

论文作者

Goyette, Pierre-Alexandre, Boulais, Étienne, Tremblay, Maude, Gervais, Thomas

论文摘要

越来越多的生物学,化学和材料科学应用的应用需要超出当前自动化移液器处理程序(例如梯度产生,界面反应,试剂流和重新配置)的流体操作。在本文中,我们介绍了像素化学显示(PCD),这是一种新的可扩展策略,用于在开放表面上高度平行,可重构的液体处理。当表面上方注入的流体流被相邻的相同的相同流体流局限时,会产生微流体像素,从而形成可重复的流量单元,该流动单元可用于镶嵌表面。生成高达144个像素的PCD被制造并用于投影由浸入和干燥表面的几种试剂制成的化学运动图片,而没有任何物理屏障或墙壁。总体而言,本文为使用连续流动流进行大规模平行的表面处理奠定了基础,并在潮湿和干地面图案和滚动过程中展示了新的可能性。

An increasing number of applications in biology, chemistry, and material sciences require fluid manipulation beyond what is possible with current automated pipette handlers, such as gradient generation, interface reactions, reagent streaming, and reconfigurability. In this article, we introduce the pixelated chemical display (PCD), a new scalable strategy to highly parallel, reconfigurable liquid handling on open surfaces. Microfluidic pixels are created when a fluid stream injected above a surface is confined by neighboring identical fluid streams, forming a repeatable flow unit that can be used to tesselate a surface. PCDs generating up to 144 pixels are fabricated and used to project chemical moving pictures made of several reagents over both immersed and dry surfaces, without any physical barrier or wall. Overall, this article sets the foundation for massively parallel surface processing using continuous flow streams and showcases new possibilities in both wet and dry surface patterning and roll-to-roll processes.

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