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一种新颖的无设备基于纸张的荧光光度法,用于分析测定软饮料样品中的奎宁。

A Novel Equipment-Free Paper-Based Fluorometric Method for the Analytical Determination of Quinine in Soft Drink Samples.

机构信息

Laboratory of Analytical Chemistry, School of Chemistry, Faculty of Sciences, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece.

出版信息

Sensors (Basel). 2023 May 28;23(11):5153. doi: 10.3390/s23115153.

Abstract

A simple, equipment-free, direct fluorometric method, employing paper-based analytical devices (PADs) as sensors, for the selective determination of quinine (QN) is described herein. The suggested analytical method exploits the fluorescence emission of QN without any chemical reaction after the appropriate pH adjustment with nitric acid, at room temperature, on the surface of a paper device with the application of a UV lamp at 365 nm. The devices crafted had a low cost and were manufactured with chromatographic paper and wax barriers, and the analytical protocol followed was extremely easy for the analyst and required no laboratory instrumentation. According to the methodology, the user must place the sample on the detection area of the paper and read with a smartphone the fluorescence emitted by the QN molecules. Many chemical parameters were optimized, and a study of interfering ions present in soft drink samples was carried out. Additionally, the chemical stability of these paper devices was considered in various maintenance conditions with good results. The detection limit calculated as 3.3 S/N was 3.6 mg L, and the precision of the method was satisfactory, being from 3.1% (intra-day) to 8.8% (inter-day). Soft drink samples were successfully analyzed and compared with a fluorescence method.

摘要

本文介绍了一种简单、无设备、直接的荧光测定方法,使用基于纸张的分析器件(PADs)作为传感器,用于选择性测定奎宁(QN)。该分析方法利用 QN 的荧光发射,在室温下,通过适当的 pH 值调整(用硝酸),在纸张器件表面无需任何化学反应,即可在 365nm 的紫外灯下进行。所制作的器件成本低廉,采用色谱纸和蜡质屏障制造,分析协议非常简单,易于分析师操作,且无需实验室仪器。根据该方法,用户必须将样品放在纸张的检测区域上,然后用智能手机读取 QN 分子发出的荧光。优化了许多化学参数,并对软饮料样品中存在的干扰离子进行了研究。此外,还考虑了这些纸张器件在各种维护条件下的化学稳定性,结果良好。计算出的检测限为 3.3 S/N,为 3.6mg/L,方法的精密度令人满意,日内精度为 3.1%,日间精度为 8.8%。成功分析了软饮料样品,并与荧光法进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/389f/10255327/94426decd5ae/sensors-23-05153-g001.jpg

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