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Droplet-based microfluidic method for robust preparation of gold nanoparticles in axisymmetric flow focusing device

机译:基于液滴的微流体方法,用于轴对称流动聚焦装置的耐金纳米颗粒的鲁棒制备

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A novel microfluidic mixing strategy was developed and used to prepare polyvinylpyrrolidone (PVP) capped gold nanoparticles (AuNPs). In this process, 1 mM tetrachloroauric acid (HAuCl4) stream containing 1% (w/v) PVP was injected through the inner capillary tube and mixed with 20 mM L-ascorbic acid solution delivered co-currently through the outer coaxial capillary. The reaction mixture was hydrodynamically flow focused by the environmentally friendly oil Miglyol 840 delivered from the opposite side of the outer capillary, which resulted in the generation of reaction droplets in a tapered collection tube. The reactants were rapidly mixed within droplets by internal circulating flows induced by hydrodynamic interactions of fluids inside the droplets with the carrier oil. The size of the prepared AuNPs was measured by both dynamic light scattering and transmission electron microscopy and was found to decrease with decreasing the droplet size and increasing the difference in velocity between the two reactant streams, which improved mixing efficiency within droplets. The smallest nanoparticles were obtained when the outlet section of the injection tube was positioned at the entry section of the collection tube due to the highest shear at the liquid interface. The carrier oil formed a hydrophobic barrier between the droplets and the reactor walls preventing deposition of the synthesised particles. As a result, the size of the AuNPs was smaller than in the co-flow mixer operated with two continuous reactant streams. (C) 2018 Elsevier Ltd. All rights reserved.
机译:开发了一种新型的微流体混合策略并用于制备聚乙烯基吡咯烷酮(PVP)封端的金纳米颗粒(AUNP)。在该方法中,通过内毛细管注射含有1%(w / v)pvp的1mm四氯硼酸(Haucl4)流并与20mM L-抗坏血酸溶液混合,通过外轴毛细管递送。反应混合物通过从外毛细管的相对侧输送的环保油酰甘油840聚焦,导致在锥形收集管中产生反应液滴。通过用载体油内部流体​​内部流体的流体动力相互作用引起的内部循环流动在液滴内快速混合反应物。通过动态光散射和透射电子显微镜测量制备的AUNP的尺寸,并且发现随着液滴尺寸的降低和增加两个反应物流之间的速度而降低,这改善了液滴内的混合效率。当注射管的出口部分定位在收集管的入口部分时,获得最小的纳米颗粒由于液体界面的最高剪切而定位在收集管的入口部分。载体油在液滴和反应器壁之间形成了疏水屏障,防止了合成颗粒的沉积。结果,AUNP的尺寸小于用两个连续反应物流操作的融流混合器中的尺寸小。 (c)2018年elestvier有限公司保留所有权利。

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