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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >3D printed device including disk-based solid-phase extraction for the automated speciation of iron using the multisyringe flow injection analysis technique
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3D printed device including disk-based solid-phase extraction for the automated speciation of iron using the multisyringe flow injection analysis technique

机译:3D印刷装置包括基于磁盘的固相提取,用于使用多光线流动注射分析技术的铁自动化物质

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Abstract The development of advanced manufacturing techniques is crucial for the design of novel analytical tools with unprecedented features. Advanced manufacturing, also known as 3D printing, has been explored for the first time to fabricate modular devices with integrated features for disk-based automated solid-phase extraction (SPE). A modular device integrating analyte oxidation, disk-based SPE and analyte complexation has been fabricated using stereolithographic 3D printing. The 3D printed device is directly connected to flow-based analytical instrumentation, replacing typical flow networks based on discrete elements. As proof of concept, the 3D printed device was implemented in a multisyringe flow injection analysis (MSFIA) system, and applied to the fully automated speciation, SPE and spectrophotometric quantification of Fe in water samples. The obtained limit of detection for total Fe determination was 7ng, with a dynamic linear range from 22ng to 2400ng Fe (3mL sample). An intra-day RSD of 4% (n = 12) and an inter-day RSD of 4.3% (n = 5, 3mL sample, different day with a different disk), were obtained. Incorporation of integrated 3D printed devices with automated flow-based techniques showed improved sensitivity (85% increase on the measured peak height for the determination of total Fe) in comparison with analogous flow manifolds built from conventional tubing and connectors. Our work represents a step forward towards the improved reproducibility in the fabrication of manifolds for flow-based automated methods of analysis, which is especially relevant in the implementation of interlaboratory analysis. Graphical abstract Display Omitted Highlights ? 3D printed device for iron speciation. ? Incorporation of SPE disks in 3D printed devices. ? Integrated analyte oxidation, SPE and complexation. ? Implementation of 3D printed devices in the MSFIA technique. ? Iron speciation in river, groundwa
机译:<![cdata [ 抽象 高级制造技术的开发对于具有前所未有的功能的新型分析工具的设计至关重要。先进的制造,也称为3D打印,首次探讨了制造模块化器件,具有基于磁盘的自动化固相提取(SPE)的集成功能。使用立体光刻3D印刷制造了整合分析物氧化,基于盘的SPE和分析物络合的模块化装置。 3D印刷设备直接连接到基于流的分析仪器,基于离散元件替换典型的流量网络。作为概念证明,3D印刷装置在多朗流注入分析(MSFIA)系统中实现,并应用于水样中Fe的全自动化物种,SPE和分光光度量化。获得总铁测定的检测极限为7 Ng,动态线性范围为22 Ng至2400 Ng Fe(3 ml样品)。日内RSD为4%(n = 12),日内RSD为4.3%(n = 5,3 ml样品,不同的一天,不同的磁盘),获得了。与传统管道和连接器构建的类似流动歧管相比,采用自动化基于流动技术的集成3D印刷设备具有改善的灵敏度(测定的峰值高度85%),与传统管道和连接器构建的类似流动歧管相比。我们的作品代表了朝向基于流动的自动化方法的歧管制造中的改善的再现性的一步,这在实施了间接性分析的实施中特别相关。 图形抽象 显示省略 < / ce:摘要> 突出显示 在3D中的SPE磁盘的融合设备。 集成分析物氧化,SPE和络合。 MSFIA技术中的3D打印设备的实现。 河流,地面的铁艺

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