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基于单个葫芦[5]脲-均三苯撑探针的荧光传感器阵列用于同时识别五种重金属离子。

A fluorescent sensor array based on a single cucurbit[5]uril-truxene probe for simultaneous identification of five heavy metal ions.

作者信息

Qiao Tingyi, Li Pei, Dong Nan

机构信息

School of Chemistry and Chemical Engineering, Guizhou University, Guiyang, 550025, China.

Key Laboratory of Macrocyclic and Supramolecular Chemistry of Guizhou Province, Guiyang, 550025, China.

出版信息

Anal Methods. 2024 Jun 27;16(25):4168-4177. doi: 10.1039/d4ay00741g.

Abstract

There is a need to develop simple and effective strategies for the rapid detection of heavy metal ions (HMIs) in order to protect the environment and human health. A simple fluorescent sensor array based on a single cucurbit[5]uril-truxene probe was proposed to simultaneously identify five HMIs (Pb, Cu, Ag, Fe and Fe). This probe was synthesized using monohydroxyl cucurbit[5]uril and monobromohexyl truxene by a substitution reaction between them. It could be observed that the fluorescence response of this synthesized probe to HMIs was closely related to the pH of the aqueous solution, exhibiting different fluorescence intensities at pH 3.0, 7.0, and 9.0. Based on this phenomenon, a fluorescent sensor array based on a single cucurbit[5]uril-truxene probe was then constructed by simply altering the pH in the sensor element. These unique fluorescence responses were analyzed using linear discriminant analysis (LDA) to identify metal ions. A concentration limit classification of 0.1 μM was applied to the above five HMIs. Moreover, the quantification of metal ions was implemented even at low concentrations of 48-121 nM. This array showed good results in the recognition of metal ions in real water samples (lake water and tap water samples), which shows its broad application prospects in many fields, including monitoring of the environmental water quality and so on.

摘要

为了保护环境和人类健康,需要开发简单有效的重金属离子(HMI)快速检测策略。提出了一种基于单个葫芦[5]脲 - 芘并四苯探针的简单荧光传感器阵列,用于同时识别五种重金属离子(铅、铜、银、铁和铁)。该探针由单羟基葫芦[5]脲和单溴己基芘并四苯通过它们之间的取代反应合成。可以观察到,这种合成探针对重金属离子的荧光响应与水溶液的pH密切相关,在pH 3.0、7.0和9.0时表现出不同的荧光强度。基于这一现象,通过简单改变传感器元件中的pH值,构建了基于单个葫芦[5]脲 - 芘并四苯探针的荧光传感器阵列。利用线性判别分析(LDA)对这些独特的荧光响应进行分析以识别金属离子。对上述五种重金属离子应用了0.1μM的浓度极限分类。此外,即使在48 - 121 nM的低浓度下也能实现金属离子的定量分析。该阵列在实际水样(湖水和自来水样)中的金属离子识别方面显示出良好的结果,这表明其在包括环境水质监测等许多领域具有广阔的应用前景。

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