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气相色谱与质谱联用以及固体沉积傅里叶变换红外光谱联用:一种解决具有挑战性鉴定问题的创新方法。

Parallel coupling of gas chromatography to mass spectrometry and solid deposition Fourier transform infrared spectroscopy: an innovative approach to address challenging identifications.

作者信息

Coppolino Carmelo, Trovato Emanuela, Salerno Tania M G, Cucinotta Lorenzo, Sciarrone Danilo, Donato Paola, Mondello Luigi

机构信息

Messina Institute of Technology c/o Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, former Veterinary School, University of Messina, Viale G. Palatucci snc, 98168, Messina, Italy.

Chromaleont s.r.l., c/o Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, former Veterinary School, University of Messina, Viale G. Palatucci snc, 98168, Messina, Italy.

出版信息

Anal Bioanal Chem. 2024 Nov;416(26):5595-5604. doi: 10.1007/s00216-024-05482-8. Epub 2024 Aug 17.

Abstract

The request for novel hyphenated instruments and techniques, capable of affording exhaustive information and results, is a focus continuously watched out. In this context, the present work aimed at the development of an integrated system combining gas chromatographic (GC) separation with mass spectrometry (MS) and (solid deposition) Fourier transform infrared spectroscopy (FTIR) detection. An external transfer line was designed in the lab for the parallel coupling of the two detectors, in such a way to obtain complementary analytical information consisting of an MS spectrum, an IR spectrum and linear retention indices (LRI), within a single analysis. The instrument performance was demonstrated for the analysis of a commercial mixture consisting of 139 hydrocarbons, comprising linear, branched, unsaturated and aromatic compounds. A 100-m poly(dimethylsiloxane) column was employed for the separation, and the outlet flow was split 95:5 between the IR and MS detectors using two uncoated capillaries. The IR spectra were acquired from solid deposits on a zinc selenide disc (-90 °C), over a spot (detector area) of about 0.1 mm, in the range of 4000-700 cm and at a resolution of 4 cm. Final identification of the separated compounds by a library search was achieved by excluding incorrect results, sequentially using a three-filter approach (85% similarity against reference MS and IR library spectra and ±10 LRI unit tolerance). Based on these preliminary results, the GC-MS/sd-FTIR system is a promising tool for the characterization of complex matrix constituents, for which identification is cumbersome, by using only one detection technique.

摘要

对能够提供详尽信息和结果的新型联用仪器及技术的需求一直备受关注。在此背景下,本工作旨在开发一种将气相色谱(GC)分离与质谱(MS)以及(固体沉积)傅里叶变换红外光谱(FTIR)检测相结合的集成系统。在实验室中设计了一条外部传输线,用于两个检测器的并行耦合,以便在单次分析中获得由质谱图、红外光谱和线性保留指数(LRI)组成的互补分析信息。通过分析一种由139种碳氢化合物组成的商业混合物(包括直链、支链、不饱和和芳香族化合物)来展示该仪器的性能。使用一根100米的聚二甲基硅氧烷柱进行分离,并使用两根未涂层的毛细管将流出物以95:5的比例分流到红外和质谱检测器之间。在-90°C的硒化锌圆盘上,在约0.1毫米的光斑(检测器区域)上,于4000 - 700厘米范围内、分辨率为4厘米的条件下采集红外光谱。通过依次使用三滤波器方法(与参考质谱和红外光谱库的相似度为85%,线性保留指数单位公差为±10)排除错误结果,实现了通过库检索对分离化合物的最终鉴定。基于这些初步结果,气相色谱-质谱/固体沉积傅里叶变换红外光谱系统是一种很有前景的工具,可用于仅通过一种检测技术就难以鉴定的复杂基质成分的表征。

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