Basic and Advanced Logical Concept Derived from Surface Enhanced Infrared Spectroscopy (SEIRS) as Sensing Probe for Analysis of Chemical Species: A Brief Review

Shubhra Sinha, M. Deb, Indrapal Karbhal, Suryakant Manikpuri, Rajiv Nayan, Babita Markande
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Abstract

The worldwide concern for environmental pollution, climate change and health hazards caused by various pollutants has significantly increased in the recent past. Various techniques have so far been employed for sensing applications of such organic as well as inorganic pollutants. Amongst the different techniques, surface enhanced infrared spectroscopy (SEIRS) is a powerful tool which is utilized for label-free and unambiguous identification of molecular species. SEIRS overcomes the limitations of the conventional infrared spectroscopy and has emerged as a potential technique with high surface sensitivity by enhancing the signals by many folds and also facilitates new studies from the fundamental aspect to applied sciences. The current review is dedicated to a comprehension of the SEIRS technique to provide a critical overview of its application as sensing probe for analysis of chemical species. The major features of Fourier Transform Infrared spectroscopy and SEIRS have been critically discussed.
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表面增强红外光谱(SEIRS)作为分析化学物质的传感探针所衍生的基本和高级逻辑概念:简要回顾
近年来,全世界对环境污染、气候变化和各种污染物造成的健康危害的关注度显著提高。迄今为止,人们已经采用了多种技术来感知这些有机和无机污染物。在各种技术中,表面增强红外光谱法(SEIRS)是一种强大的工具,可用于无标记、无歧义地识别分子物种。SEIRS 克服了传统红外光谱的局限性,通过成倍地增强信号,已成为一种具有高表面灵敏度的潜在技术,同时也促进了从基础科学到应用科学的新研究。本综述致力于对 SEIRS 技术的理解,以提供其作为传感探针分析化学物种应用的重要概述。文章对傅立叶变换红外光谱和 SEIRS 的主要特点进行了深入探讨。
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