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Microfluidic Multi-Scale Homogeneous Mixing with Uniform Residence Time Distribution for Rapid Production of Various Metal Core-Shell Nanoparticles

机译:微流体多尺寸均匀混合,均匀停留时间分布,用于快速生产各种金属核心壳纳米粒子

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摘要

Seed-mediated growth of core-shell nanoparticles, which is conventionally performed in a batch reactor, is successfully reproduced in a microfluidic reactor for a facile production of uniform metal core-shell nanoparticles. The proposed microfluidic design is based on the microstructure inversion for achieving multi-scale homogeneous mixing with uniform nanoparticle residence time. Simulations demonstrate that among the staggered herringbone microstructures investigated in this study, the upper herringbone (UH) structure can rapidly and homogeneously mix multiple-sized reagents and can also prevent both the irreversible trapping and long residence time of the nanoparticles inside the microfluidic channel. A wide variety of metal core-shell nanoparticles, namely Au@Ag, Au@Pd, and Au@Au with an interior nanogap, are synthesized by using the microfluidic reactor with built-in UH microstructures. The proposed microfluidic synthesis produces a more uniform shell size than the conventional batch synthesis. This work could significantly expand the practical utility of metal core-shell nanoparticles in a multitude of applications ranging from catalysis to nanomedicine.
机译:种子介导的核 - 壳纳米颗粒的生长,其通常在批量反应器中进行,在微流体反应器中成功地再现用于均匀金属核心 - 壳纳米颗粒的体积制备。所提出的微流体设计基于微观结构反演,以实现具有均匀纳米粒子停留时间的多尺寸均匀混合。仿真表明,在本研究中研究的交错人的菱形微观结构中,上人字形(UH)结构可以快速且均匀地混合多尺寸的试剂,并且还可以防止微流体通道内的纳米颗粒的不可逆捕获和长停留时间。通过使用具有内置uH微观结构的微流体反应器合成了各种金属芯壳纳米粒子,即具有内部纳米孔的Au @ Ag,Au @ Pd和Au @ au。所提出的微流体合成产生比传统批量合成更均匀的壳体尺寸。这项工作可以显着扩展金属核心壳纳米颗粒在从催化作用到纳米医生的众多应用中的实用效用。

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