用于扩散比色反应的嵌入式微滴配置:通过埃尔曼反应测定硫醇的新方法。

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Archana Jain, Manju Gupta, Krishna K Verma
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引用次数: 0

摘要

一种名为 "嵌入试剂滴中的萃取反应"(EXRED)的新型微比色法,是利用一个试剂水滴(2 μL),周围环绕着一层异辛烷:辛醇(1:1,v/v;2.5 μL)的液膜,并由一个浸入水样溶液中的微型注射器支撑。这种配置在一个步骤中完成了反应的所有过程,即微萃取、基质净化、分析物通过扩散到试剂滴中进行预浓缩以及特定的比色反应。该方法已在埃尔曼试剂(5,5'-二硫双(2-硝基苯甲酸)二钠盐)测定硫醇方面得到验证。嵌入式滴液的制作方法是:依次抽取等量的埃尔曼试剂和有机溶剂到微量注射器中,然后在针尖上安装一个聚四氟乙烯(PTFE)套管,套管的末端是一个微型漏斗。然后,将套管尖端伸入酸化的硫醇水溶液样品中,缓慢按压注射器活塞,形成复合试剂滴。这种嵌入式液滴结构使得亚硝基硫醇能够通过有机溶剂膜从酸化的供体相(样品)扩散到受体埃尔曼试剂滴中。通过光纤 CCD 阵列 NanoDrop 显微分光光度法测量形成的 2-硝基-5-硫代苯甲酸酯的浓黄色。硫醇迁移率是单个硫醇分子几何形状的函数,摩尔吸收率在 3.73 × 104 至 1.33 × 105 L M-1 cm-1 之间,是经典埃尔曼反应报告值的 3 至 10 倍,确定了硫醇的校准范围为 5-700 μM。在第二种方法中,离子型和离子型硫醇与埃尔曼试剂发生预反应,反应产物 2-硝基-5-硫代苯甲酸酯在酸化后通过溶剂膜扩散到 pH 值为 8 的磷酸盐缓冲液的受体液滴中。在这里,得到的平均摩尔吸收率(3.85 × 105 L M-1 cm-1)是经典反应值的 28 倍,产生的硫醇校准范围为 2-60 μM。两种方法的平均 LOD/LOQ 值分别为 0.048/0.16 μM。响应面方法优化参数为:(a) 埃尔曼试剂(25 mM);(b) 萃取时间(17 分钟);(c) 硫酸钠(500 毫克)。EXRED 方法符合绿色分析化学标准,即 AGREE (0.65)、AGREEprep (0.83)、ComplexGAPI、BAGI (65.0) 和可持续性指标 (7.79)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Embedded microdrops configuration for diffusion-based colorimetric reactions: a novel approach for thiol determination by the Ellman reaction.

A new variant of micro-colorimetry, called Extractive Reactions in Embedded Drops (EXRED), utilizes an aqueous drop of a reagent (2 μL) surrounded by a liquid film of isooctane : octanol (1 : 1, v/v; 2.5 μL) and supported by a microsyringe placed immersed into the aqueous sample solution. This configuration conducted all events of the reaction occurring in a single step, viz., microextraction, matrix cleanup and preconcentration of the analyte by diffusion into the reagent drop, and the specific colorimetric reaction. The method has been verified for the determination of thiols by the Ellman reagent (5,5'-dithio-bis(2-nitrobenzoic acid), disodium salt). The embedded drops were constructed by sequentially withdrawing measured aliquots of the Ellman reagent and the organic solvent into a microsyringe and mounting the needle tip with a polytetrafluoroethylene (PTFE) sleeve terminating into a microfunnel. Then, while protruding the sleeve tip into the acidified aqueous thiol sample, the syringe plunger was slowly pressed to form a composite reagent drop. The embedded drop configuration allowed the diffusion of unionic thiols through the organic solvent film from the acidified donor phase (the sample) into the acceptor Ellman reagent drop. The intense yellow colour of 2-nitro-5-thiobenzoate formed was measured by fiber optic CCD array NanoDrop micro-spectrophotometry. The thiol migration rate was a function of the molecular geometry of individual thiols, attaining molar absorptivities in the range from 3.73 × 104 to 1.33 × 105 L M-1 cm-1 that were 3 to 10 times the reported value of the classical Ellman reaction, establishing the calibration range of 5-700 μM of thiol. In the second method, ionic and unionic thiols were prereacted with the Ellman reagent, and the reaction product 2-nitro-5-thiobenzoate, after acidification, was made to diffuse through the solvent film into an acceptor drop of pH 8 phosphate buffer. Here, the average molar absorptivity obtained (3.85 × 105 L M-1 cm-1) was 28 times the value of the classical reaction, producing the calibration range of 2-60 μM of thiol. The averaged LOD/LOQ values for the two methods were 0.048/0.16 μM. The response surface methodology-optimized parameters were (a) Ellman reagent (25 mM), (b) extraction time (17 min) and (c) sodium sulphate (500 mg). The EXRED methods obeyed the green analytical chemistry criteria, viz., AGREE (0.65), AGREEprep (0.83), ComplexGAPI, BAGI (65.0) and metric of sustainability (7.79).

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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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