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表面增强拉曼光谱法中目标分析物与基底之间亲和力的发展及其在环境污染物检测中的应用。

Development of affinity between target analytes and substrates in surface enhanced Raman spectroscopy for environmental pollutant detection.

机构信息

State Key Laboratory of Safety and Control for Chemicals, SINOPEC Research Institute of Safety Engineering, Qingdao, Shandong 266071, People's Republic of China.

Research Center for Intelligent and Wearable Technology, Qingdao University, Qingdao, Shandong 266071, People's Republic of China.

出版信息

Anal Methods. 2020 Dec 17;12(47):5657-5670. doi: 10.1039/d0ay01760d.

Abstract

Environmental pollution has long been a social concern due to the variety of pollutants and their wide distribution, persistence and being detrimental to health. It is therefore necessary to develop rapid and sensitive strategies to trace and detect these compounds. Among various detection methodologies, surface enhanced Raman spectroscopy (SERS) has become an attractive option as it enables accurate analyte identification, simple sample preparation, rapid detection and ultra-high sensitivity without any interference from water. For SERS detection, an essential yet challenging step is the effective capture of target analytes onto the surface of metal nanostructures with a high intensity of enhanced electromagnetic field. This review has systematically summarized recent advances in developing affinity between targets and the surface of SERS substrates via direct adsorption, hydrophobic functional groups, boronate affinity, metal organic frameworks (MOFs), DNA aptamers and molecularly imprinted polymers (MIPs). At the end of this review, technical limitations and outlook have been provided, with suggestions on optimizing SERS techniques for real-world applications in environmental pollutant detection.

摘要

环境污染一直是一个社会关注的问题,因为污染物的种类繁多,分布广泛,具有持久性,且对健康有害。因此,有必要开发快速、灵敏的策略来追踪和检测这些化合物。在各种检测方法中,表面增强拉曼光谱(SERS)因其能够进行准确的分析物识别、简单的样品制备、快速检测和超高灵敏度而成为一种很有吸引力的选择,而且不受水的干扰。对于 SERS 检测,一个必不可少但具有挑战性的步骤是有效地将目标分析物捕获到具有高强度增强电磁场的金属纳米结构表面上。本综述系统地总结了通过直接吸附、疏水官能团、硼酸亲和、金属有机框架(MOFs)、DNA 适体和分子印迹聚合物(MIPs)在 SERS 基底表面发展目标物与 SERS 基底亲和力的最新进展。在综述的最后,提供了技术限制和展望,并就优化 SERS 技术在环境污染物检测的实际应用方面提出了建议。

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