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Controllable Synthesis of Silver Nanoparticles Using Three-Phase Flow Pulsating Mixing Microfluidic Chip

机译:三相流脉动混合微流控芯片可控合成银纳米粒子

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On the basis of liquid-phase reduction mechanism, a novel synthesis method to prepare silver nanoparticles (AgNPs) is proposed, which uses piezoelectric-actuated three-phase flow pulsating mixing microfluidic chip. In order to study and explore the influence of different factors on the synthesis of AgNPs, a series of related synthesis experiments were carried out. The corresponding experimental conditions include the concentration of sodium hydroxide and reducing agent solution, polyvinylpyrrolidone (PVP) dosage, inlet flow rate, and synthesis temperature. The synthesized AgNPs were characterized by the UV-Vis absorption spectrophotometer and transmission electron microscopy. The effects of different experimental conditions on the controllable synthesis of AgNPs were analyzed, and the optimum synthesis conditions of AgNPs were obtained. Experimental results show that the spherical AgNPs with an average particle diameter of about 29 nm, high yield, fine morphology, and good monodispersity were synthesized using the microfluidic chip under the conditions of the working frequency (200 Hz), the initial concentration of silver nitrate (1 mM), the synthesis temperature (80°C), the concentration ratio of sodium hydroxide to silver nitrate (2  1), the concentration ratio of glucose to silver nitrate (4  1), the inlet flow rate (3.5 ml/min), and the quality ratio of PVP to silver (more than 1  1). The related research shows that it is an efficient synthesis method to develop the controllable synthesis experiments of AgNPs under multifactors using the three-phase pulsating mixing microfluidic chip.
机译:在液相还原机理的基础上,提出了一种利用压电驱动的三相流脉动混合微流控芯片制备银纳米颗粒的新方法。为了研究和探索不同因素对AgNPs合成的影响,进行了一系列相关的合成实验。相应的实验条件包括氢氧化钠和还原剂溶液的浓度,聚乙烯吡咯烷酮(PVP)的剂量,入口流速和合成温度。通过紫外可见吸收分光光度计和透射电子显微镜对合成的AgNPs进行表征。分析了不同实验条件对AgNPs可控合成的影响,获得了最佳的AgNPs合成条件。实验结果表明,在工作频率(200 Hz),硝酸银初始浓度的条件下,使用微流控芯片合成了平均粒径约29 nm,产率高,形貌优良,单分散性好的球形AgNPs。 (1 mM),合成温度(80°C),氢氧化钠与硝酸银的浓度比(2 1),葡萄糖与硝酸银的浓度比(4 1),入口流速(3.5 ml / min ),以及PVP与银的质量比(大于1 1)。相关研究表明,利用三相脉冲混合微流控芯片开发多因子AgNPs的可控合成实验是一种有效的合成方法。

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