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High-throughput controllable generation of droplet arrays with low consumption

机译:高通量可控制的液滴阵列生成,消耗低

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We describe a controllable sliding method for fabricating millions of isolated femto-to nanoliter-sized droplets with defined volume, geometry and position and a speed of up to 375 kHz. In this work, without using a superhydrophobic or superoleophobic surface, arrays of droplets are instantly formed on the patterned substrate by sliding a strip of liquid, including water, low-surface-tension organic solvents and solution, along the substrate. To precisely control the volume of the droplets, we systemically investigate the effects of the size of the wettable pattern, the viscosity of the liquid and sliding speed, which were found to vary independently to tune the height and volume of the droplets. Through this method, we successfully fabricated an oriented single metal-organic framework crystal array with control over their XY positioning on the surface, as characterized by microscopy and X-ray diffraction (XRD) techniques. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们描述了一种可控的滑动方法,用于制造数百万个具有定义的体积,几何形状和位置以及最高375 kHz的速度的毫微微飞秒至纳升大小的液滴。在这项工作中,在不使用超疏水或超疏油性表面的情况下,通过沿着基板滑动一条包括水,低表面张力有机溶剂和溶液的液体带,可在已图案化的基板上立即形成液滴阵列。为了精确控制液滴的体积,我们系统地研究了可湿性图案尺寸,液体粘度和滑动速度的影响,发现这些影响会独立变化以调整液滴的高度和体积。通过这种方法,我们成功地制备了定向单金属有机骨架晶体阵列,并通过显微镜和X射线衍射(XRD)技术对其表面上的XY位置进行了控制。 (C)2018 Elsevier B.V.保留所有权利。

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