样品制备中的多功能吸附材料:我们下一步要做什么?

IF 6.5 Q1 CHEMISTRY, ANALYTICAL
Rafael Oliveira Martins, Maria Flávia Assunção Magalhães, Winnie Evelyn Valeria Perez Vite, Jussara da Silva Alves, Camila Will, Fernando Mauro Lanças
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引用次数: 0

摘要

样品制备方法的不断进步导致了增强策略的发展,以解决定性和定量分析中不同矩阵的复杂性。这些方法的目的是在不同的分析仪器分析之前,方便样品的清理和目标分析物的预浓缩。在传统和小型固体基方法中,萃取的分析性能主要受吸附相的影响。由于吸附剂负责调节目标分析物和萃取物质之间的相互作用,因此仔细选择是必不可少的。在这种情况下,广泛的吸附剂材料已经被引入,以确保有效和选择性的相互作用,支持它们在样品制备方案中的应用。然而,文献仍然缺乏全面和最新的评论,强调吸附剂发展的最新进展,包括传统和生物基替代品。因此,本综述旨在提供吸附剂创新的当前概述,讨论新兴趋势,并概述该领域潜在的未来方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Versatile sorbent materials in sample preparation: Where do we go next?

Versatile sorbent materials in sample preparation: Where do we go next?
Continuous advances in sample preparation methods have led to the development of enhanced strategies to address the complexity of diverse matrices in both qualitative and quantitative analyses. These methods are designed to facilitate sample clean-up and preconcentration of target analytes before analysis by different analytical instruments. In both conventional and miniaturized solid-based approaches, the analytical performance of the extraction is primarily influenced by the sorbent phase. As the sorbent is responsible for mediating the interaction between the target analytes and the extraction material, careful selection is essential. In this context, a wide range of sorbent materials has been introduced to ensure efficient and selective interactions, supporting their application in sample preparation protocols. Nevertheless, the literature still lacks comprehensive and up-to-date reviews that highlight recent advances in sorbent development, including both conventional and bio-based alternatives. Therefore, this review aims to provide a current overview of sorbent innovations, discuss emerging trends, and outline potential future directions in the field.
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