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Continuous Flow Controlled Synthesis of Gold Nanoparticles Using Pulsed Mixing Microfluidic System

机译:脉冲混合微流控系统连续流控制合成金纳米粒子

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摘要

To prepare the gold nanoparticles (AuNPs) with uniform sizes, fine morphology, and good monodispersity, a pulsed mixing microfluidic system based on PZT actuation was presented. The system includes PZT micropump and Y type micromixer. By adjusting voltage (entrance flow rate), pulsed frequency, phase, and other parameters, a variety of mixing modes can be achieved, so as to realize the controllable synthesis of nanoparticles in a certain range. By numerical simulation and analysis, the channel section size, entrance angle, and pulse frequency were optimized. Based on the optimized structure and working parameters, the test prototype has been manufactured in lab, and the related synthesis tests of AuNPs were carried out. The test results indicate that AuNPs with uniform morphology and good monodispersity can be synthesized using the system with the section size (0.4 mm × 0.4 mm), the entrance channel angle (60°) under condition of the pulsed frequency (300 Hz), and the entrance flow rate (4 mL/min). The average diameter and its standard deviation of AuNPs synthesized were 21.6 nm, 4.83 nm, respectively. The research work above can be applied to the fields such as the controlled synthesis of noble metal nanoparticles, biomedicine, and microchemical system.
机译:为了制备具有均一尺寸,良好形貌和良好单分散性的金纳米颗粒(AuNPs),提出了一种基于PZT驱动的脉冲混合微流控系统。该系统包括PZT微型泵和Y型微型混合器。通过调节电压(入口流率),脉冲频率,相位等参数,可以实现多种混合方式,以实现一定范围内纳米粒子的可控合成。通过数值模拟和分析,对通道截面尺寸,入射角和脉冲频率进行了优化。根据优化的结构和工作参数,在实验室中制备了测试原型,并进行了相关的AuNPs合成测试。测试结果表明,在脉冲频率为300 Hz的条件下,采用截面尺寸为0.4 mm×0.4 mm,入口通道角度为60°的系统可以合成形态均匀,单分散性好的AuNPs。入口流速(4 mL / min)。合成的金纳米粒子的平均直径为21.6 nm,标准偏差为4.83 nm。以上研究工作可应用于贵金属纳米粒子的可控合成,生物医学和微化学体系等领域。

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