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A New Dip Coating Method Using Supporting Liquid for Forming Uniformly Thick Layers on Serpentine 3D Substrates

机译:一种新的浸涂方法,其使用支撑液体在蛇形3D基板上形成均匀厚的层

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摘要

Dip coating has demonstrated great potential as a multimaterial coating method providing additional functions to substrates or producing a freestanding microscopic layer upon removal of the substrate. In dip coating, a liquid layer is applied on a substrate by dipping and withdrawing it from a liquid bath, and then curing the layer in air. Thus, manufacturing uniformly thick layers on serpentine 3D substrates is difficult due to the influence of gravity during the prolonged curing process, thus hindering the overall potential applications of this method. Herein, a new dip coating method is proposed to overcome the problems of the conventional method by using an immiscible, density-matched, and interfacial-tension-minimized liquid phase, termed the supporting liquid. This new method is performed by dipping and oscillating a serpentine 3D substrate in a biphasic liquid bath with a small amount of prepolymer solution floating atop the supporting liquid. The prepolymer coating, immersed in the supporting liquid, is then cured. The effect of gravity on the prepolymer coating is eliminated by the buoyancy of the supporting liquid and Laplace pressure is weakened by the minimized interfacial tension. This study demonstrates that the new method can fabricate uniformly thick layers covering the entire surface of a serpentine 3D substrate and can be used during the generation of vascular replicas.
机译:浸渍涂层已经证明了作为多涂层方法的巨大潜力,其在除去基板时提供额外的函数或在基材上产生独立的微观层。在浸渍涂层中,通过浸渍并从液体浴中取出并从液体浴中取出液体层,然后在空气中固化层。因此,由于在延长固化过程中,蛇形3D基材上的制造均匀厚的层难以困难,从而阻碍了该方法的整体潜在应用。在此,提出了一种新的浸涂方法来克服通过使用不混溶的密度匹配和界面张力最小化的液相来克服常规方法的问题,称为支撑液。通过在双相液体浴中浸入并振荡蛇形液体浴中,少量预聚物溶液漂浮在支撑液体上进行这种新方法。然后将预聚物涂层浸入支撑液中,然后固化。通过支撑液的浮力消除重力对预聚物涂层的影响,并通过最小化的界面张力削弱拉普拉斯压力。该研究表明,新方法可以制造覆盖蛇形3D基板的整个表面的均匀厚的层,并且可以在血管复制品的产生期间使用。

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