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改性石墨烯-二氧化硅作为吸附剂的管内固相微萃取与液相色谱-串联质谱联用。咖啡饮料中黄嘌呤的测定。

Modified graphene-silica as a sorbent for in-tube solid-phase microextraction coupled to liquid chromatography-tandem mass spectrometry. Determination of xanthines in coffee beverages.

机构信息

São Carlos Institute of Chemistry, University of São Paulo, 13560-970 São Carlos SP, Brazil.

São Carlos Institute of Chemistry, University of São Paulo, 13560-970 São Carlos SP, Brazil.

出版信息

J Chromatogr A. 2020 Jun 21;1621:461089. doi: 10.1016/j.chroma.2020.461089. Epub 2020 Apr 17.

Abstract

Given the increasing need for analyzing natural or contaminating compounds in complex food matrices in a simple and automated way, coupling miniaturized sample preparation techniques with chromatographic systems have become a growing field of research. In this regard, given the low extraction efficiency of conventional sorbent phases, the development of materials with enhanced extraction capabilities is of particular interest. Here we present several synthesized graphene-based materials supported on aminopropyl silica as sorbents for the extraction of xanthines. The synthesized materials were characterized by infrared spectroscopy and scanning electron microscopy. Aminopropyl silica coated with graphene oxide and functionalized with octadecylsilane/end-capped (SiGOC18ecap) showed the best performance for xanthines extraction. Hence, this material was employed as an in-tube solid phase microextraction (in-tube SPME) device coupled online with ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) and applied for the analysis of xanthines in roasted coffee samples. Extraction parameters and detection conditions were optimized. The method showed low limits of quantification (0.3-1.0 µg L), precision as relative standard deviation (RSD) values lower than 10%, recoveries between 73 and 109%, and pre-concentration factors from 5.6 to 7.2. Caffeine was determined in all ground roasted and instant coffee samples, in a wide range (0.9 to 36.8 mg g), and small amounts of theobromine and theophylline were also detected in some samples. This work demonstrated that functionalized graphene-based materials represent a promising new sorbent class for in-tube SPME, showing improved extraction capacity. The method was efficient, simple, and fast for the analysis of xanthines, demonstrating an excellent potential to be applied in other matrices.

摘要

鉴于以简单和自动化的方式分析复杂食品基质中天然或污染化合物的需求不断增加,将微型化样品制备技术与色谱系统相结合已成为一个不断发展的研究领域。在这方面,考虑到传统吸附剂相的萃取效率较低,开发具有增强萃取能力的材料尤为重要。在这里,我们提出了几种基于石墨烯的材料,它们负载在氨丙基硅上,作为黄嘌呤的萃取吸附剂。所合成的材料通过红外光谱和扫描电子显微镜进行了表征。氧化石墨烯负载的氨丙基硅并用十八烷基硅烷/端封端(SiGOC18ecap)功能化的材料显示出对黄嘌呤萃取的最佳性能。因此,这种材料被用作在线与超高效液相色谱-串联质谱(UPLC-MS/MS)联用的管内固相微萃取(in-tube SPME)装置,并应用于烤咖啡样品中黄嘌呤的分析。优化了萃取参数和检测条件。该方法的检出限低(0.3-1.0μg L),相对标准偏差(RSD)值低于 10%,回收率在 73-109%之间,预浓缩因子为 5.6-7.2。在所有研磨的烤制和速溶咖啡样品中均测定了咖啡因,其含量范围很广(0.9 至 36.8 mg g),在一些样品中还检测到少量的可可碱和茶碱。这项工作表明,功能化的基于石墨烯的材料代表了一种有前途的新型管内 SPME 吸附剂,显示出增强的萃取能力。该方法对于黄嘌呤的分析高效、简单、快速,显示出在其他基质中应用的巨大潜力。

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