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首页> 外文期刊>Analytical chemistry >3D-Printed Fluidic Devices for Nanoparticle Preparation and Flow-Injection Amperometry Using Integrated Prussian Blue Nanoparticle-Modified Electrodes
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3D-Printed Fluidic Devices for Nanoparticle Preparation and Flow-Injection Amperometry Using Integrated Prussian Blue Nanoparticle-Modified Electrodes

机译:使用集成的普鲁士蓝纳米粒子修饰电极的3D打印流体装置,用于纳米粒子制备和流动注射安培计

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摘要

A consumer-grade fused filament fabrication (PP) 31) printer was used to construct fluidic devices for nanoparticle preparation and electrochemical sensing. Devices were printed using poly(ethylene terephthalate) and featured threaded ports to connect polyetheretherketone (PEEK) tubing via printed fittings prepared from acrylonitrile butadiene styrene (ABS). These devices included channels designed to have 800 mu m x 800 mu m square cross sections and were semitransparent to allow visualization of the solution-filled channels. A 3D-printed device with a Y-shaped mixing channel was used to prepare Prussian blue nanoparticles (PBNPs) under flow rates of 100 to 2000 mu L min(-1). PBNPs were then attached to gold electrodes for hydrogen peroxide sensing. 3D-printed devices used for electrochemical measurements featured threaded access ports into which a fitting equipped with reference, counter, and PBNP-modified working electrodes could be inserted. PBNP-modified electrodes enabled amperometric detection of H2O2 in the 3D-printed channel by flow-injection analysis, exhibiting a detection limit of 100 nM and linear response up to 20 mu M. These experiments show that a consumer-grade FFF printer can be used to fabricate low-cost fluidic devices for applications similar to those that have been reported with more expensive 3D-printing methods.
机译:消费级熔融丝制造(PP)31)打印机用于构造用于纳米颗粒制备和电化学传感的流体装置。使用聚对苯二甲酸乙二醇酯印刷设备,并使用螺纹端口通过由丙烯腈丁二烯苯乙烯(ABS)制成的印刷配件连接聚醚醚酮(PEEK)管。这些设备包括设计成具有800微米x 800微米方形横截面的通道,并且是半透明的,以允许溶液填充通道的可视化。使用具有Y形混合通道的3D打印设备,以100至2000μL min(-1)的流量制备普鲁士蓝纳米颗粒(PBNP)。然后将PBNP附着在金电极上以进行过氧化氢感测。用于电化学测量的3D打印设备具有螺纹入口,可以将配备有参比电极,计数器和PBNP修饰的工作电极的配件插入其中。 PBNP修饰的电极可通过流动注射分析对3D打印通道中的H2O2进行安培检测,检测限为100 nM,线性响应高达20μM。这些实验表明,可以使用消费级FFF打印机制造低成本的流体装置,其应用类似于使用更昂贵的3D打印方法所报道的应用。

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