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使用环糊精修饰的环保型电化学传感器,对环境水中的三氯生进行亚纳摩尔检测限的原位监测。

In situ monitoring of triclosan in environmental water with subnanomolar detection limits using eco-friendly electrochemical sensors modified with cyclodextrins.

机构信息

Pharmaceutical Analytical Chemistry Department, Faculty of Pharmacy, Ain Shams University, Abbassia, Cairo 11566, Egypt.

出版信息

Environ Sci Process Impacts. 2021 Mar 1;23(3):457-466. doi: 10.1039/d0em00387e. Epub 2021 Feb 8.

Abstract

The environmental emergence of unexpected contaminants has gained the attention of the scientific community. A broad spectrum antimicrobial compound named triclosan (TCS) was detected in the environment as an emerging contaminant. Owing to its inherent toxicity, we have proposed eco-friendly potentiometric liquid state sensors to be used for monitoring and quantifying TCS in environmental water samples. The proposed sensors have been optimized by modifying the inner filling solution using hydrophilic 2-hydroxypropyl β-cyclodextrin as a complexing agent to be capable of minimizing the trans-membrane ion flux and hence improving the selective and sensitive determination of TCS in environmental matrices with low LOD values. The obtained linear response of the optimized sensor was (1 × 10 to 1 × 10 M) compared to the control sensor (1 × 10 to 1 × 10 M). The obtained limit of detection (LOD) value was found to be 9.86 × 10 M compared to 9.78 × 10 M of the control sensor. The modification of the inner filling solution of the sensor with 2-hydroxypropyl β-cyclodextrin improves not only its sensitivity but also its response time to be only 5 seconds. The electrical performance of the proposed sensor was evaluated following IUPAC recommendations. Both the pH and temperature effects were studied and optimized. Two different greenness assessment tools, Analytical Eco-scale and Green Procedure Index, were adopted upon the evaluation of the proposed sensors' greenness.

摘要

环境中意外污染物的出现引起了科学界的关注。一种广谱抗菌化合物,名为三氯生(TCS),被检测为环境中的新兴污染物。由于其固有毒性,我们提出了环保型电位液体状态传感器,用于监测和量化环境水样中的 TCS。通过用亲水性 2-羟丙基-β-环糊精作为络合剂来修饰内充溶液,对提出的传感器进行了优化,以最小化跨膜离子通量,从而提高对环境基质中 TCS 的选择性和灵敏性测定,具有较低的检出限(LOD)值。与对照传感器(1×10 至 1×10 M)相比,优化传感器的获得线性响应范围为(1×10 至 1×10 M)。与对照传感器(9.78×10 M)相比,获得的检出限(LOD)值为 9.86×10 M。传感器内充溶液的改性用 2-羟丙基-β-环糊精不仅提高了其灵敏度,而且还提高了其响应时间,仅为 5 秒。根据 IUPAC 建议评估了提出的传感器的电气性能。研究并优化了 pH 值和温度的影响。在评估提出的传感器的绿色性时,采用了两种不同的绿色性评估工具,即分析生态规模和绿色程序指数。

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