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首页> 外文期刊>Analytical chemistry >Combining Drop-to-Drop Solvent Microextraction with Gas Chromatography/Mass Spectrometry Using Electronic Ionization and Self-Ion/Molecule Reaction Method To Determine Methoxyacetophenone Isomers in One Drop of Water
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Combining Drop-to-Drop Solvent Microextraction with Gas Chromatography/Mass Spectrometry Using Electronic Ionization and Self-Ion/Molecule Reaction Method To Determine Methoxyacetophenone Isomers in One Drop of Water

机译:结合滴滴溶剂微萃取与气相色谱/质谱联用电子电离和自离子/分子反应方法测定一滴水中的甲氧基苯乙酮异构体

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摘要

A novel analytical technique termed drop-to-drop solvent microextraction (DDSME) was developed to determine three methoxyacetophenone isomers in one drop of water, which were then detected by gas chromatography/mass spectrometry using electronic ionization mass spectrometry for quantification analysis and self-ion/molecule reaction/tandem mass spectrometry for isomer differentiation. The best optimum parameters for the DDSME technique were as follows: extraction time, 5 min; using toluene as the extraction solvent; volume of extraction solvent, 0.5 (mu)L and no salt addition. The advantages of this method are rapidity, convenience, ease of operation, simplicity of the device, and extremely little solvent and sample consumption. The limit of detection (LOD) for this technique was 1 ng/mL. The relative standard deviation was less than 2.6percent (n velence 5). The linear range of the calibration curve of DDSME is from 0.01 to 5 (mu)g/mL with correlation coefficient (r~(2)) of >0.954. In the comparison of the LOD of DDSME with other sample pretreatment methods including liquid/liquid extraction (LLE), single-drop microextraction (SDME), solid-phase microextraction (SPME), and liquid-phase microextraction (LPME) using a dual gauge microsyringe with hollow fiber methods, this method shows much better in sensitivity than the LLE (25 ng/mL) and it is compatible with SDME (0.5 ng/mL), SPME (0.5 ng/mL), and LPME using a dual gauge microsyringe with a hollow fiber (1 ng/mL). However, DDSME was more convenient than the LPME using a dual gauge microsyringe with a hollow fiber method and much lower cost than the SPME technique.
机译:开发了一种称为滴滴溶剂微萃取(DDSME)的新型分析技术,用于测定一滴水中的三种甲氧基苯乙酮异构体,然后通过气相色谱/质谱法使用电子电离质谱法对其进行定量分析和自离子检测/分子反应/串联质谱用于异构体区分。 DDSME技术的最佳最佳参数如下:提取时间5分钟;使用甲苯作为萃取溶剂;体积的萃取溶剂,0.5μL,不加盐。该方法的优点是快速,方便,操作简便,设备简单且溶剂和样品消耗极少。该技术的检出限(LOD)为1 ng / mL。相对标准偏差小于2.6%(nvelence 5)。 DDSME校准曲线的线性范围为0.01至5μg/ mL,相关系数(r〜(2))> 0.954。在DDSME的LOD与其他样品预处理方法的比较中,包括使用双液位计的液/液萃取(LLE),单滴微萃取(SDME),固相微萃取(SPME)和液相微萃取(LPME)使用中空纤维方法的微型注射器,该方法的灵敏度比LLE(25 ng / mL)好得多,并且与使用双标准微型注射器的SDME(0.5 ng / mL),SPME(0.5 ng / mL)和LPME兼容用中空纤维(1 ng / mL)。然而,使用中空纤维方法的双规微注射器,DDSME比LPME更方便,并且成本比SPME技术低得多。

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