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采用振动光谱研究获取桉叶精油的质量控制方法。

Vibrational spectroscopic studies to acquire a quality control method of Eucalyptus essential oils.

作者信息

Baranska M, Schulz H, Reitzenstein S, Uhlemann U, Strehle M A, Krüger H, Quilitzsch R, Foley W, Popp J

机构信息

Federal Centre for Breeding Research on Cultivated Plants (BAZ), Institute for Plant Analysis, Neuer Weg 22-23, D-06484 Quedlinburg, Germany.

出版信息

Biopolymers. 2005 Aug 5;78(5):237-48. doi: 10.1002/bip.20284.

Abstract

This article presents a novel and original approach to analyze in situ the main components of Eucalyptus oil by means of Raman spectroscopy. The obtained two-dimensional Raman maps demonstrate a unique possibility to study the essential oil distribution in the intact plant tissue. Additionally, Fourier Transform (FT)-Raman and attenuated total reflection (ATR)-IR spectra of essential oils isolated from several Eucalyptus species by hydrodistillation are presented. Density Functional Theory (DFT) calculations were performed in order to interpret the spectra of the essential oils of the Eucalyptus species. It is shown that the main components of the essential oils can be recognized by both vibrational spectroscopic techniques using the spectral information of the pure terpenoids. Spectroscopic analysis is based on the key bands of the individual volatile substances and therefore allows one to discriminate different essential oil profiles of several Eucalyptus species. It has been found that the presented spectroscopic data correlate very well with those obtained by gas chromatography (GC) analysis. All these investigations are helpful tools to generate a fast and easy method to control the quality of the essential oils with vibrational spectroscopic techniques in combination with DFT calculations.

摘要

本文提出了一种新颖且独特的方法,通过拉曼光谱原位分析桉叶油的主要成分。所获得的二维拉曼图谱展示了研究完整植物组织中精油分布的独特可能性。此外,还给出了通过水蒸馏法从几种桉属植物中分离得到的精油的傅里叶变换(FT)-拉曼光谱和衰减全反射(ATR)-红外光谱。进行了密度泛函理论(DFT)计算,以解释桉属植物精油的光谱。结果表明,利用纯萜类化合物的光谱信息,两种振动光谱技术均可识别精油的主要成分。光谱分析基于各个挥发性物质的关键谱带,因此能够区分几种桉属植物不同的精油谱图。研究发现,所呈现的光谱数据与气相色谱(GC)分析获得的数据高度相关。所有这些研究都是有助于生成一种快速简便方法的工具,该方法可通过振动光谱技术结合DFT计算来控制精油的质量。

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