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一种用于碱性离子分析的一次性光学舌面拟合方法。

A surface fit approach with a disposable optical tongue for alkaline ion analysis.

机构信息

ECsens, Department of Analytical Chemistry, Faculty of Sciences, University of Granada, Granada, Spain.

出版信息

Anal Chim Acta. 2011 May 23;694(1-2):128-35. doi: 10.1016/j.aca.2011.03.043. Epub 2011 Mar 30.

Abstract

A disposable optical tongue for the alkaline ions Na(I) and K(I) is described. The two-sensor layout prepared on a transparent support consists of non-specific polymeric membranes working by ionophore-chromoionophore chemistry. The non-specific behavior of the membranes was controlled by means of the crown ether-type ionophore present. The imaging of the tongue, after reaction for 3 min with the unknown solution, by means of a conventional flatbed scanner working by transmission mode, makes it possible to calculate the H (hue) value of the hue, saturation, value (HSV) color space used as a robust and precise analytical parameter. The modelling of the response of the two-sensor tongue as a sigmoidal surface is used to characterize the behavior of the tongue and as a basis to infer the concentration values. To compute the concentration of two analytes from the two hue values obtained using the optical tongue, a surface fit approach was used. The tongue works over a wide dynamic range (1.0×10(-4)-0.1 M both in Na(I) and K(I)). The sensing membranes show good intramembrane (1.4% RSD) and intermembrane precision (0.71% RSD) and lifetime (around 45 days in darkness). The procedure was used to analyze Na(I) and K(I) in different types of natural waters (tap and mineral), validating the results against a reference procedure.

摘要

描述了一种用于碱金属离子 Na(I) 和 K(I) 的一次性光学舌。在透明基底上制备的双传感器布局由通过离子载体-变色离子载体化学起作用的非特异性聚合膜组成。通过存在的冠醚型离子载体控制膜的非特异性行为。通过使用透射模式工作的常规平板扫描仪对舌头进行成像,在与未知溶液反应 3 分钟后,可以计算用作稳健和精确分析参数的色调、饱和度、值 (HSV) 颜色空间的 H(色调)值。将双传感器舌的响应建模为一个 sigmoidal 表面,用于表征舌的行为并作为推断浓度值的基础。为了从光学舌获得的两个色调值计算两种分析物的浓度,使用了曲面拟合方法。该舌在很宽的动态范围内工作(Na(I) 和 K(I) 的浓度范围均为 1.0×10(-4)-0.1 M)。传感膜显示出良好的膜内(1.4% RSD)和膜间精度(0.71% RSD)和寿命(在黑暗中约 45 天)。该方法用于分析不同类型的天然水(自来水和矿泉水)中的 Na(I) 和 K(I),并将结果与参考方法进行验证。

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