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Introduction of organic/hydro-organic matrices in inductively coupled plasma optical emission spectrometry and mass spectrometry: A tutorial review. Part I. Theoretical considerations

机译:电感耦合等离子体发射光谱法和质谱法中有机/氢有机基体的介绍:教程复习。第一部分:理论考虑

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摘要

Due to their outstanding analytical performances, inductively coupled plasma optical emission spectrometry (ICP-OES) and mass spectrometry (ICP-MS) are widely used for multi-elemental measurements and also for isotopic characterization in the case of ICP-MS. While most studies are carried out in aqueous matrices, applications involving organic/hydro-organic matrices become increasingly widespread. This kind of matrices is introduced in ICP based instruments when classical “matrix removal” approaches such as acid digestion or extraction procedures cannot be implemented. Due to the physico-chemical properties of organic/hydro-organic matrices and their associated effects on instrumentation and analytical performances, their introduction into ICP sources is particularly challenging and has become a full topic. In this framework, numerous theoretical and phenomenological studies of these effects have been performed in the past, mainly by ICP-OES, while recent literature is more focused on applications and associated instrumental developments. This tutorial review, divided in two parts, explores the rich literature related to the introduction of organic/hydro-organic matrices in ICP-OES and ICP-MS. The present Part I, provides theoretical considerations in connection with the physico-chemical properties of organic/hydro-organic matrices, in order to better understand the induced phenomena. This focal point is divided in four chapters highlighting: (i) the impact of organic/hydro-organic matrices from aerosol generation to atomization/excitation/ionization processes; (ii) the production of carbon molecular constituents and their spatial distribution in the plasma with respect to analytes repartition; (iii) the subsequent modifications of plasma fundamental properties; and (iv) the resulting spectroscopic and non spectroscopic interferences. This first part of this tutorial review is addressed either to beginners or to more experienced scientists who are interested in the analysis of organic/hydro-organic matrices by ICP sources and would like to consider the theoretical background of effects induced by such matrices. The second part of this tutorial review will be dedicated to more practical consideration on instrumentation, such as adapted introductions devices, as well as instrumental and operating parameters optimization. The analytical strategies for elemental quantification in such matrices will also be addressed.
机译:由于其出色的分析性能,电感耦合等离子体发射光谱(ICP-OES)和质谱(ICP-MS)被广泛用于多元素测量以及ICP-MS的同位素表征。虽然大多数研究是在水性基质中进行的,但涉及有机/氢有机基质的应用却越来越广泛。当无法实现经典的“基质去除”方法(例如酸消解或萃取程序)时,会在基于ICP的仪器中引入这种基质。由于有机/氢有机基体的物理化学性质及其对仪器和分析性能的相关影响,将它们引入ICP离子源特别具有挑战性,已成为一个完整的话题。在这种框架下,过去主要通过ICP-OES对这些效应进行了大量的理论和现象学研究,而最近的文献则更多地关注应用和相关的仪器开发。本教程回顾分为两部分,探讨了与在ICP-OES和ICP-MS中引入有机/氢有机基质有关的丰富文献。本部分第一部分提供了与有机/氢有机基质的物理化学性质有关的理论考虑,以便更好地理解诱发的现象。该重点分为四个章节,重点介绍:(i)有机/氢有机基质从气溶胶生成到雾化/激发/电离过程的影响; (ii)关于分析物重新分配的碳分子成分的产生及其在血浆中的空间分布; (iii)随后对等离子体基本性质的修改; (iv)产生的光谱和非光谱干扰。本教程回顾的第一部分面向初学者或更有经验的科学家,他们对通过ICP来源分析有机/氢有机基质感兴趣,并希望考虑此类基质引起的影响的理论背景。本教程复习的第二部分将致力于对仪器进行更实际的考虑,例如改装的引入装置以及仪器和操作参数的优化。这些基质中元素定量的分析策略也将得到解决。

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