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通过衰减全反射表面增强红外吸收光谱法(ATR-SEIRAS)原位监测小分子环境污染物在适体传感器界面上的选择性吸附机制。

In situ monitoring of the selective adsorption mechanism of small environmental pollutant molecules on aptasensor interface by attenuated total reflection surface enhanced infrared absorption spectroscopy (ATR-SEIRAS).

机构信息

School of Chemical Science and Engineering, Shanghai Key Lab of Chemical Assessment and Sustainability, Tongji University, 1239 Siping Road, Shanghai 200092, China.

School of Chemical Science and Engineering, Shanghai Key Lab of Chemical Assessment and Sustainability, Tongji University, 1239 Siping Road, Shanghai 200092, China.

出版信息

J Hazard Mater. 2021 Feb 5;403:123953. doi: 10.1016/j.jhazmat.2020.123953. Epub 2020 Sep 12.

Abstract

In situ monitoring of the interactions and properties of pollutant molecules at the aptasensor interface is being a very hot and interesting topic in environmental analysis since its charming molecule level understanding of the mechanism of environmental biosensors. Attenuated total reflection surface enhanced infrared absorption spectroscopy (ATR-SEIRAS) provides a unique and convenient technique for the in situ analysis, but is not easy for small molecules. Herein, an ATR-SEIRAS platform has been successfully developed to in situ monitor the selective adsorption mechanism of small pollutant molecule atrazine (ATZ) on the aptasensor interface by characteristic N‒H peak of ATZ for the first time. Based on the constructed ATR-SEIRAS platform, a thermodynamics model is established for the selective adsorption of ATZ on the aptasensor interface, described with Langmuir adsorption with a dissociation constant of 1.1 nM. The adsorption kinetics parameters are further obtained with a binding rate constant of 8.08×10 M s. A promising and feasible platform has therefore successfully provided for the study of the selective sensing mechanism of small pollutant molecules on biosensors interfaces, further broadening the application of ATR-SEIRAS technology in the field of small pollutant molecules.

摘要

在环境分析中,由于其对环境生物传感器机制的迷人的分子水平理解,在适体传感器界面上对污染物分子的相互作用和性质进行原位监测,一直是一个非常热门和有趣的话题。衰减全反射表面增强红外吸收光谱(ATR-SEIRAS)为原位分析提供了一种独特而方便的技术,但对小分子来说并不容易。本文首次成功开发了一种 ATR-SEIRAS 平台,通过 ATZ 的特征 N-H 峰,原位监测小分子污染物莠去津(ATZ)在适体传感器界面上的选择性吸附机制。基于构建的 ATR-SEIRAS 平台,建立了 ATZ 在适体传感器界面上的选择性吸附的热力学模型,用具有解离常数为 1.1 nM 的 Langmuir 吸附来描述。进一步通过结合速率常数为 8.08×10^M s 获取了吸附动力学参数。因此,一个有前途且可行的平台成功地为研究生物传感器界面上小分子污染物的选择性传感机制提供了支持,进一步拓宽了 ATR-SEIRAS 技术在小分子污染物领域的应用。

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