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等离子体表面增强拉曼散射纳米基底用于检测阴离子环境污染物:当前进展和未来展望。

Plasmonic surface-enhanced Raman scattering nano-substrates for detection of anionic environmental contaminants: Current progress and future perspectives.

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei, 106, Taiwan, ROC.

Department of Chemistry, College of Natural and Computational Sciences, Debre Markos University, P.O. Box 269, Debre Markos, Ethiopia.

出版信息

Environ Res. 2023 Mar 15;221:115247. doi: 10.1016/j.envres.2023.115247. Epub 2023 Jan 11.

Abstract

Surface-enhanced Raman scattering spectroscopy (SERS) is a powerful technique of vibrational spectroscopy based on the inelastic scattering of incident photons by molecular species. It has unique properties such as ultra-sensitivity, selectivity, non-destructivity, speed, and fingerprinting properties for analytical and sensing applications. This enables SERS to be widely used in real-world sample analysis and basic plasmonic mechanistic studies. However, the desirable properties of SERS are compromised by the high cost and low reproducibility of the signals. The development of multifunctional, stable and reusable nano-engineered SERS substrates is a viable solution to circumvent these drawbacks. Recently, plasmonic SERS active nano-substrates with various morphologies have attracted the attention of researchers due to promising properties such as the formation of dense hot spots, additional stability, tunable and controlled morphology, and surface functionalization. This comprehensive review focused on the current advances in the field of SERS active nanosubstrates suitable for the detection and quantification of anionic environmental pollutants. The common fabrication methods, including the techniques for morphological adjustments and surface modification, substrate categories, and the design of nanotechnologically fabricated plasmonic SERS substrates for anion detection are systematically presented. Here, the need for the design, synthesis, and functionalization of SERS nano-substrates for anions of great environmental importance is explained in detail. In addition, the broad categories of SERS nano-substrates, namely colloid-based SERS substrates and solid-support SERS substrates are discussed. Moreover, a brief discussion of SERS detection of certain anionic pollutants in the environment is presented. Finally, the prospects in the fabrication and commercialization of pilot-scale handheld SERS sensors and the construction of smart nanosubstrates integrated with novel amplifying materials for the detection of anions of environmental and health concern are proposed.

摘要

表面增强拉曼散射光谱(SERS)是一种基于分子物种对入射光子非弹性散射的振动光谱技术。它具有超灵敏性、选择性、非破坏性、速度快和指纹识别特性等独特性质,适用于分析和传感应用。这使得 SERS 能够广泛应用于实际样品分析和基础等离子体力学研究。然而,SERS 的理想特性受到信号成本高和重现性低的限制。多功能、稳定和可重复使用的纳米工程 SERS 基底的开发是克服这些缺点的可行解决方案。最近,由于具有形成密集热点、额外稳定性、可调谐和可控形态以及表面功能化等有前景的特性,各种形态的等离子体 SERS 活性纳米基底引起了研究人员的关注。本综述重点介绍了适用于检测和量化阴离子环境污染物的 SERS 活性纳米基底领域的最新进展。系统地介绍了常见的制备方法,包括形态调整和表面改性技术、基底类别以及纳米技术制造的等离子体 SERS 基底用于阴离子检测的设计。在这里,详细说明了设计、合成和功能化对环境重要性阴离子的 SERS 纳米基底的必要性。此外,还讨论了 SERS 纳米基底的广泛类别,即基于胶体的 SERS 基底和固载 SERS 基底。此外,还简要介绍了 SERS 对环境中某些阴离子污染物的检测。最后,提出了在制造和商业化手持式 SERS 传感器的原型以及构建与新型放大材料集成的智能纳米基底以用于检测环境和健康关注的阴离子方面的前景。

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