实验室套件:用于光学和电化学双模式检测的 3D 打印便携式设备。

IF 5.6 1区 化学 Q1 CHEMISTRY, ANALYTICAL Talanta Pub Date : 2024-08-01 Epub Date: 2024-04-29 DOI:10.1016/j.talanta.2024.126185
Cristian Grazioli, Elisa Lanza, Michele Abate, Gino Bontempelli, Nicolò Dossi
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引用次数: 0

摘要

将电化学方法和光学方法结合到单个便携式设备中,有望成为一种具有挑战性的组合,从而提高对复杂化学体系的信息获取能力。本文介绍了一种基于低成本电子器件的低成本分光光度计装置,该装置集成了配备丝网印刷电极(SPE)的电分析池,并利用 DIY 方法组装而成。该装置易于使用,可同时进行分光光度测量和电分析测量,提供同步信息,并可对收集到的结果进行同步比较和自动验证。在含有专利蓝(E-131)和艳蓝(E-133)混合物的溶液中,成功测试了拟议系统的分析稳健性和精确性,这两种食品染料的光学和氧化还原特性非常相似。
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Lab-on kit: A 3D printed portable device for optical and electrochemical dual-mode detection.

The hyphenation of electrochemical methods and optical methods in a single portable device is expected to be a challenging combination to enhance the information which can be gained on complex chemical systems. In this paper, a low-cost spectrophotometric device based on low-cost electronics integrated with an electroanalytical cell equipped with a screen printed electrode (SPE) and assembled exploiting a DIY approach, is presented. This easy to use device allowed spectrophotometric and electroanalytical measurements to be performed simultaneously providing simultaneous information and enabling concomitant comparison and autovalidation of the results collected. The analytical robustness and precision of the proposed system was successfully tested on solutions containing mixtures of Patent Blue (E-131) and Brilliant Blue (Erioglaucine E-133), two food dyes displaying optical and redox properties very similar to each other.

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来源期刊
Talanta
Talanta 化学-分析化学
CiteScore
12.30
自引率
4.90%
发文量
861
审稿时长
29 days
期刊介绍: Talanta provides a forum for the publication of original research papers, short communications, and critical reviews in all branches of pure and applied analytical chemistry. Papers are evaluated based on established guidelines, including the fundamental nature of the study, scientific novelty, substantial improvement or advantage over existing technology or methods, and demonstrated analytical applicability. Original research papers on fundamental studies, and on novel sensor and instrumentation developments, are encouraged. Novel or improved applications in areas such as clinical and biological chemistry, environmental analysis, geochemistry, materials science and engineering, and analytical platforms for omics development are welcome. Analytical performance of methods should be determined, including interference and matrix effects, and methods should be validated by comparison with a standard method, or analysis of a certified reference material. Simple spiking recoveries may not be sufficient. The developed method should especially comprise information on selectivity, sensitivity, detection limits, accuracy, and reliability. However, applying official validation or robustness studies to a routine method or technique does not necessarily constitute novelty. Proper statistical treatment of the data should be provided. Relevant literature should be cited, including related publications by the authors, and authors should discuss how their proposed methodology compares with previously reported methods.
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