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Versatile reconfigurable glass capillary microfluidic devices with Lego (R) inspired blocks for drop generation and micromixing

机译:具有乐高(R)的多功能可重新配置玻璃毛细管微流体装置,灵感块用于辍学和微混合

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Novel cost effective, versatile, reconfigurable, reusable and easy to assemble glass capillary microfluidic devices were developed and used to generate micro/nano-materials with controlled size and morphology. The devices are composed of coaxial assemblies of glass capillaries held between two interchangeable plastic blocks fabricated from chemically inert polyoxymethylene copolymer using computer numerical control (CNC) machining. Three different blocks were combined and locked together using Lego (R) inspired stud-and-hole coupling system to achieve different flow configurations. The device allows a truly axisymmetric round capillary inside a round capillary geometry and self-alignment of capillaries. The synthesis of polyvinylpyrrolidone capped gold nanoparticles and liposomes of controlled size was demonstrated in the co-flow device by mixing the contents of two parallel laminar streams. The flow focusing device was used to generate piroxicam monohydrate crystals of controlled size (10-29 mu m) by antisolvent crystallisation. Silver nanoparticles with tailored size (40-90 nm) were prepared in the three-phase device by merging silver nitrate and tannic acid/citrate streams inside droplets. The same device was used to prepare fluorescently labelled double emulsion droplets with controlled number of inner droplets. The droplet morphology was modified and tuned during operation by adjusting the distance between the inner capillaries. Water-in-oil emulsions consisted of Eudragit S100 solution at pH > 7 dispersed in Miglyol (R) 840 were prepared and gellified in situ over 6 h without fouling. The setup time of the novel devices was reduced from similar to 30 min in manually made capillary devices to just several minutes. (C) 2019 The Authors. Published by Elsevier Inc.
机译:新颖成本效益的,多功能的,可重新配置的,可重复使用的且易于组装玻璃毛细管微流体装置进行了开发和用于产生微/纳米材料具有受控尺寸和形态。该装置由两个可互换的塑料块之间保持玻璃毛细管的同轴组件的由化学使用计算机数字控制(CNC)机械加工制造的惰性聚甲醛共聚物。三种不同的块合并,并使用乐高(R)的启发螺柱和孔耦合系统来实现不同的流动结构锁定在一起。该装置允许一个圆形毛细管的几何形状和毛细管的自对准内部真正的轴对称圆形毛细管。聚乙烯吡咯烷酮加帽的金纳米颗粒和控制尺寸的脂质体的合成是通过混合两种平行的层流的内容在共流装置证明。流动聚焦装置用于通过反溶剂结晶来产生控制尺寸的吡罗昔康一水合物晶体(10-29微米)。通过合并硝酸银和单宁酸/液滴内柠檬酸流在三相设备制备具有定制尺寸(40-90 nm)的银纳米粒子。相同的设备被用于制备具有受控数量的内液滴的荧光标记的双乳液的液滴。液滴的形态被修改并通过调节内毛细管之间的距离在操作期间调整。水包油乳剂组成的在分散于的Miglyol(R)的pH> 7 840制备和不结垢在6小时的原位胶凝化的Eudragit S100溶液。新颖的设备的设置时间从相似于手动进行毛细管设备只是几分钟减少到30分钟。 (c)2019年作者。 elsevier公司出版

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