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基于 pH 值的用于水中金属离子识别的单传感器阵列。

A pH-Based Single-Sensor Array for Discriminating Metal Ions in Water.

机构信息

School of Chemistry, The University of Sydney, Sydney, NSW, 2006, Australia.

School of Biomedical Engineering, The University of Sydney, Sydney, NSW, 2006, Australia.

出版信息

Chem Asian J. 2022 May 16;17(10):e202200204. doi: 10.1002/asia.202200204. Epub 2022 Apr 7.

Abstract

Human activities, such as mining and manufacturing, expose society and the natural environment to harmful levels of metal ions. Recently, optical sensor arrays for metal ion detection have become popular owing to their favourable features, such as facile sample preparation and the requirement of less expensive instrumentation compared to traditional, spectrometry-based analysis techniques. Sensor arrays usually consist of numerous optical probes that are used in combination to generate unique analyte responses. In contrast, here we present an array that comprises a single fluorescent sensor, Coum4-DPA, that produces unique responses to metal ions in different pH environments. With this simple sensing platform, we were able to classify 10 metal ions in different water sources and quantify Pb in tap water using just one fluorescent sensor, a few pH buffers and two sets of spectral data. This novel approach significantly decreases time and costs associated with probe synthesis and data collection, making it highly transferrable to real-world metal sensing applications.

摘要

人类活动,如采矿和制造业,使社会和自然环境暴露在有害水平的金属离子下。最近,用于金属离子检测的光学传感器阵列由于其有利的特点而受到欢迎,例如与传统的基于光谱分析技术相比,样品制备更加简单,所需仪器设备也更便宜。传感器阵列通常由许多光学探针组成,这些探针结合使用以产生独特的分析物响应。相比之下,在这里,我们提出了一个由单个荧光传感器 Coum4-DPA 组成的阵列,该传感器在不同的 pH 环境下对金属离子产生独特的响应。使用这个简单的传感平台,我们能够对来自不同水源的 10 种金属离子进行分类,并仅使用一个荧光传感器、一些 pH 缓冲液和两组光谱数据来定量自来水中的 Pb。这种新颖的方法大大减少了探针合成和数据收集所需的时间和成本,使其非常适合实际金属传感应用。

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