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Scaling the Analytical Information Given by Several Types of Colorimetric and Spectroscopic Instruments Including Smartphones: Rules for Their Use and Establishing Figures of Merit of Solid Chemosensors

机译:缩放由诸多种的比色和光谱仪器提供的分析信息,包括智能手机:使用规则以及建立固体化学传感器的优点

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摘要

The analytical information given by different types of instruments was scaled in order to establish suitably the figures of merit of a given methodology based on color measurements. Different lab and portable instruments, including smartphones with and without a miniaturized spectrophotometer accessory, have been tested. In order to obtain broad information and using objective criteria, these instruments have been compared from (1) the analytical point of view, considering mainly the detection limit (limits of detection [LODs]), selectivity, accuracy and intra- and interday precision, size, components, and costs; and (2) the environmental point of view, based on their footprint as kilograms of CO_(2). No significant differences in the precision were obtained with RSD (%) values lower than 10% for all of the instruments, but the achieved values of LOD, selectivity, accuracy, and cost were different. Footprints of CO_(2) were better for portable instrumentation, especially for smartphones. Three solid chemosensors made of different materials (PDMS, paper, or nylon) have been tested for the determination of ammonia and hydrogen sulfide at different concentration levels (ppb levels). As a result of this study, some rules for selecting the instrument for obtaining the required information have been established. Two apps have been developed for quantitation by smartphones, one for working with RGB values and the other for spectra obtained by the miniaturized spectrophotometer coupled to a smartphone.
机译:对不同类型仪器提供的分析信息进行缩放,以适当确定基于颜色测量的给定方法的优值。不同的实验室和便携式仪器,包括配备和不配备小型分光光度计附件的智能手机,都已经过测试。为了获得广泛的信息并使用客观标准,从(1)分析角度对这些仪器进行了比较,主要考虑了检测限(检测限[LOD])、选择性、准确度、日内和日间精密度、尺寸、成分和成本;以及(2)从环境角度来看,基于它们的足迹(单位:千克CO_2)。当所有仪器的RSD(%)值低于10%时,精密度没有显著差异,但LOD、选择性、准确度和成本的实现值不同。对于便携式仪器,尤其是智能手机,CO_2的足迹更好。三种由不同材料(PDMS、纸张或尼龙)制成的固体化学传感器已在不同浓度水平(ppb水平)下用于测定氨和硫化氢。作为这项研究的结果,已经制定了一些选择获取所需信息的工具的规则。智能手机已经开发了两个用于定量的应用程序,一个用于处理RGB值,另一个用于通过与智能手机耦合的微型分光光度计获得光谱。

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  • 来源
    《Analytical chemistry》 |2021年第15期|共10页
  • 作者单位

    MINTOTA Research Group Departament de Química Analítica Facultat de Química Universitat de València;

    MINTOTA Research Group Departament de Química Analítica Facultat de Química Universitat de València;

    MINTOTA Research Group Departament de Química Analítica Facultat de Química Universitat de València;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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