拉曼光谱的方法和应用:现代研究、诊断和食品质量控制的有力技术

Farah Kenza Benattia, Z. Arrar, F. Dergal
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引用次数: 0

摘要

近年来,拉曼光谱技术已发展成为一种重要的快速、直接、无损的检测技术。本文研究了拉曼光谱的理论基础和实验技术,重点介绍了该技术的性能和不同的应用。光谱学,一般来说,是研究电磁辐射和物质之间的相互作用,它对应于在给定频率下以波的形式发射或传输能量。拉曼光谱是基于光子在电子上的非弹性扩散。电子能级的变化导致分子的不同振动模式。这些不同的振动模式发生在每个分子的特定频率上。拉曼光谱学在化学中被用作识别样品中的分子的工具。事实上,每个拉曼峰都与分子的一种振动模式有关;它被认为是一种更有用的方法来监测在几个领域,特别是在食品安全测试样品的化学参数。本文综述了拉曼光谱的研究现状和展望。拉曼效应从发现之日起就被认为是给化学家的一份大礼,因为它有助于更好地描述物质的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods and Applications of Raman Spectroscopy: A Powerful Technique in Modern Research, Diagnosis, and Food Quality Control
Raman spectroscopy has evolved into an important fast, rapid, direct, and non-destructive technique that has recently been applied in different fields. The present work aims to study the theoretical bases and the experimental techniques relate to Raman spectroscopy and highlight the performance as well as the different applications of the technique. Spectroscopy, in general, is the study of the interaction between electromagnetic radiation and matter, which corresponds to the emission or transmission of energy in the form of a wave at a given frequency. Raman spectroscopy is based on the inelastic diffusion of photons on electrons. The change in electron energy level leads to different modes of vibration of a molecule. These different vibration modes occur at specific frequencies for each molecule. Raman spectroscopy is used in chemistry as a tool to identify molecules in a sample. Indeed, each Raman peak is associated with a vibration mode of a molecule; it is considered as a more useful approach to monitor the chemical parameters of samples tested in several fields, especially in food safety This review covers the current research status and prospects of Raman spectroscopy. The Raman effect is considered from the time of its discovery as a great gift for chemists because it contributes to a better characterization of the structure of matter.
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