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Differentiation of volatile aromatic isomers and structural elucidation of volatile compounds in essential oils by combination of HPLC separation and crystalline sponge method

机译:高效液相色谱分离与结晶海绵法联用鉴别芳香油中的挥发性芳族异构体和挥发性化合物的结构

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Structure elucidation of volatile aromatic isomers at trace level has long been considered as an elusive task, due to their structural similarities and similar polarities, even with the aid of many spectroscopic techniques such as mass spectrometry and nuclear magnetic resonance (NMR) spectroscopy. Single crystal X-ray diffraction (SCD) is recognized as one of the most powerful structural elucidation techniques. The recently developed crystalline sponge method overcomes the intrinsic limitation of SCD that the target molecules must be single crystals, being able to analyze non-crystalline and trace-amount compounds without any special treatment. In order to investigate whether the crystalline sponge method could be used for the structure elucidation of closely related isomers or other volatile and even oily compounds in complex mixtures at trace level, we combined HPLC separation with the crystalline sponge method for X-ray crystallographic analysis. In this paper, two pairs of volatile aromatic isomers including cis/trans isomers of asarone and positional isomers of carvacrol and thymol, as well as the main volatile component in essential oil extracted from Acorus Tatarinowii, were first isolated by HPLC and encapsulated into the crystalline sponge then elucidated by X-ray crystallographic analysis. Direct observation of these volatile compounds by X-ray crystallography was achieved using only microgram quantities without crystallization or derivatization. Unambiguous identification of these compounds was realized without reference standards. This strategy offers a promising platform capable of providing high-confidence detailed structural information of closely related isomers as well as other volatile and even oily compounds in complex mixtures in microgram quantities. (C) 2016 Elsevier B.V. All rights reserved.
机译:长期以来,由于其结构相似性和极性相似,即使在许多光谱技术(例如质谱和核磁共振(NMR)光谱)的帮助下,痕量挥发性芳族异构体的结构阐明也一直被认为是一项艰巨的任务。单晶X射线衍射(SCD)被认为是最强大的结构解析技术之一。最近开发的结晶海绵法克服了SCD的固有局限性,即目标分子必须是单晶,无需任何特殊处理即可分析非结晶和痕量化合物。为了研究结晶海绵法是否可用于阐明痕量水平复杂混合物中紧密相关的异构体或其他挥发性甚至油性化合物的结构,我们将HPLC分离与结晶海绵法结合用于X射线晶体学分析。本文首先通过HPLC分离了两对挥发性芳族异构体,包括细辛的顺式/反式异构体以及香芹酚和百里香酚的位置异构体,以及从Acorus Tatarinowii提取的香精油中的主要挥发性成分,并将其包封到晶体中然后通过X射线晶体学分析阐明海绵。仅使用微克量即可实现通过X射线晶体学对这些挥发性化合物的直接观察,而无需结晶或衍生化。无需参考标准即可实现对这些化合物的明确鉴定。该策略提供了一个有前途的平台,该平台能够以微克数量提供复杂混合物中紧密相关的异构体以及其他挥发性甚至油性化合物的高信度详细结构信息。 (C)2016 Elsevier B.V.保留所有权利。

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