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Programmable wettability on photocontrolled graphene film

机译:光控石墨烯薄膜上的可编程润湿性

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Surface materials with specific wettability play important roles in a wide variety of areas from science to industry. We present a novel paraffin-infused porous graphene film (PIPGF) with programmable wettability. Because of graphene’s photothermal property, the paraffin in the PIPGF was in transition between liquid and solid in response to near-infrared (NIR) light irradiation. Thus, we imparted the film with a dynamic and reversible transition between a slippery and a rough surface as the remotely tunable wettability. In addition, with the integration of NIR masks, the paraffin could melt at corresponding patterns on the PIPGF, which formed special flow pathways for the slipping droplets. Therefore, the PIPGF could provide programmable wettability pathways for the spatiotemporal droplet manipulation by flexibly changing the NIR masks. We demonstrated these programmable wettability pathways to not only simplify liquid handling in the microplates and droplet microarrays technology but also to provide distinctly microfluidic microreactors for different purposes, such as practical blood grouping diagnosis. These features indicated that the photocontrollable PIPGF would be amenable to a variety of applications, such as microfluidic systems, laboratory-on-a-chip settings, and droplet manipulations.
机译:具有特定润湿性的表面材料在从科学到工业的众多领域中都发挥着重要作用。我们提出了一种具有可编程润湿性的注入石蜡的多孔石墨烯薄膜(PIPGF)。由于石墨烯的光热特性,PIPGF中的石蜡响应近红外(NIR)光照射而在液体和固体之间转变。因此,由于可远程调节的润湿性,我们赋予了膜在光滑表面和粗糙表面之间的动态且可逆的过渡。此外,通过结合近红外面罩,石蜡可以在PIPGF上以相应的模式熔化,从而形成了滑落液滴的特殊流动路径。因此,PIPGF可以通过灵活地改变NIR掩模来为时空液滴操作提供可编程的润湿性途径。我们展示了这些可编程的润湿性途径,不仅简化了微孔板和微滴微阵列技术中的液体处理,而且还为不同目的(例如实际血型诊断)提供了明显的微流控微反应器。这些特征表明,可光控制的PIPGF将适用于​​多种应用,例如微流体系统,芯片实验室设置和液滴操作。

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