顶空固相微萃取:基本原理和最新进展

IF 5.2 Q1 CHEMISTRY, ANALYTICAL
Carlina Lancioni , Cecilia Castells , Roberto Candal , Marcos Tascon
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引用次数: 15

摘要

固相微萃取(SPME)已成为一种强大的样品制备技术,可以有效地从复杂的基质中分离和富集分析物。最广泛的SPME模式之一,包括直接从顶空(HS)萃取,这是平衡的样品。从这个意义上说,HS-SPME为样品制备提供了最好的平台之一,特别是对挥发性和半挥发性有机化合物的分析。此外,当应用于生物分析、环境科学、食品和文化遗产等不同领域的样品时,该技术已被证明是通用的、敏感的、健壮的和环保的。此外,在过去几年中,HS-SPME的实施随着使用原位和体内方法随时间监测复杂系统的需要而急剧增长,利用其非侵入性的优势。在这篇综述文章中,作者介绍了该技术的基本原理,旨在批判性地理解其优点和局限性,并强调了过去十年中发表的最新进展。为此目的,精心设计了关于萃取阶段发展、技术进步和在不同领域的有关应用的特别章节。最后,对该技术的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Headspace solid-phase microextraction: Fundamentals and recent advances

Solid-phase microextraction (SPME) has become a powerful sample preparation technique which allows to efficiently isolate and enrich analytes from complex matrixes. One of the most widespread SPME modes, consists of the extraction directly from the headspace (HS) which is equilibrated with the sample. In this sense, HS-SPME provides one of the best platforms for sample preparation, especially for the analysis of volatile and semi-volatile organic compounds. Furthermore, this technique has demonstrated to be versatile, sensitive, robust, and environmentally friendly when applied to samples coming from a diverse variety of fields such as bioanalysis, environmental sciences, food and cultural heritage. Moreover, during last years, the implementation of HS-SPME has dramatically grown along with the need to monitor complex systems over time using in situ and in vivo approaches, taking advantage of its noninvasive nature. In this review article, the authors present the fundamentals of this technique aiming to critically understand its advantages and limitations, highlighting the recent advances published in the last ten years. To this aim, special sections dealing with extractive phase development, technological advances and relevant applications in different fields have been carefully designed. Finally, some thoughts and perspectives about the future of the technique are also discussed.

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CiteScore
3.50
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