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Reversing Coffee-Ring Effect by Laser-Induced Differential Evaporation

机译:激光诱导的差分蒸发逆转咖啡环效应

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摘要

The coffee-ring effect, ubiquitously present in the drying process of aqueous droplets, impedes the performance of a myriad of applications involving precipitation of particle suspensions in evaporating liquids on solid surfaces, such as liquid biopsy combinational analysis, microarray fabrication, and ink-jet printing, to name a few. We invented the methodology of laser-induced differential evaporation to remove the coffee-ring effect. Without any additives to the liquid or any morphology modifications of the solid surface the liquid rests on, we have eliminated the coffee-ring effect by engineering the liquid evaporation profile with a CO2 laser irradiating the apex of the droplets. The method of laser-induced differential evaporation transitions particle deposition patterns from coffee-ring patterns to central-peak patterns, bringing all particles (e.g. fluorescent double strand DNAs) in the droplet to a designated area of 100 μm diameter without leaving any stains outside. The technique also moves the drying process from the constant contact radius (CCR) mode to the constant contact angle (CCA) mode. Physical mechanisms of this method were experimentally studied by internal flow tracking and surface evaporation flux mapping, and theoretically investigated by development of an analytical model.
机译:水滴干燥过程中普遍存在的咖啡环效应阻碍了无数应用程序的性能,这些应用程序包括固体表面上蒸发液体中的颗粒悬浮液的沉淀,例如液体活检组合分析,微阵列制造和喷墨。印刷,仅举几例。我们发明了激光诱导的差动蒸发以消除咖啡环效应的方法。由于没有对液体添加任何添加剂或液体停留在固体表面上的任何形态发生了改变,我们已经通过用CO2激光照射液滴的顶点来设计液体蒸发曲线,从而消除了咖啡环效应。激光诱导差分蒸发的方法将颗粒沉积模式从咖啡环模式转变为中心峰模式,将液滴中的所有颗粒(例如荧光双链DNA)带到直径为100μm的指定区域,而不会在外部留下任何污渍。该技术还将干燥过程从恒定接触半径(CCR)模式移至恒定接触角(CCA)模式。通过内部流动跟踪和表面蒸发通量图对这种方法的物理机理进行了实验研究,并通过建立分析模型进行了理论研究。

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