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基于石墨烯的杂化材料作为固相微萃取技术吸附剂的研究进展与应用

Advances and Applications of Hybrid Graphene-Based Materials as Sorbents for Solid Phase Microextraction Techniques.

作者信息

Cardoso Alessandra Timóteo, Martins Rafael Oliveira, Lanças Fernando Mauro

机构信息

Laboratory of Chromatography, Institute of Chemistry at Sao Carlos, University of Sao Paulo, P.O. Box 780, São Carlos 13566590, Brazil.

出版信息

Molecules. 2024 Aug 2;29(15):3661. doi: 10.3390/molecules29153661.

Abstract

The advancement of traditional sample preparation techniques has brought about miniaturization systems designed to scale down conventional methods and advocate for environmentally friendly analytical approaches. Although often referred to as green analytical strategies, the effectiveness of these methods is intricately linked to the properties of the sorbent utilized. Moreover, to fully embrace implementing these methods, it is crucial to innovate and develop new sorbent or solid phases that enhance the adaptability of miniaturized techniques across various matrices and analytes. Graphene-based materials exhibit remarkable versatility and modification potential, making them ideal sorbents for miniaturized strategies due to their high surface area and functional groups. Their notable adsorption capability and alignment with green synthesis approaches, such as bio-based graphene materials, enable the use of less sorbent and the creation of biodegradable materials, enhancing their eco-friendly aspects towards green analytical practices. Therefore, this study provides an overview of different types of hybrid graphene-based materials as well as their applications in crucial miniaturized techniques, focusing on offline methodologies such as stir bar sorptive extraction (SBSE), microextraction by packed sorbent (MEPS), pipette-tip solid-phase extraction (PT-SPE), disposable pipette extraction (DPX), dispersive micro-solid-phase extraction (d-µ-SPE), and magnetic solid-phase extraction (MSPE).

摘要

传统样品制备技术的进步带来了小型化系统,这些系统旨在缩小传统方法的规模,并倡导环境友好型分析方法。尽管这些方法常被称为绿色分析策略,但其有效性与所使用吸附剂的性质密切相关。此外,要全面采用这些方法,创新和开发新的吸附剂或固定相至关重要,这能增强小型化技术在各种基质和分析物中的适应性。基于石墨烯的材料具有显著的多功能性和改性潜力,由于其高表面积和官能团,使其成为小型化策略的理想吸附剂。它们显著的吸附能力以及与绿色合成方法(如生物基石墨烯材料)的契合,使得能够使用更少的吸附剂并制造可生物降解的材料,从而增强了它们在绿色分析实践中的环保特性。因此,本研究概述了不同类型的基于石墨烯的杂化材料及其在关键小型化技术中的应用,重点关注离线方法,如搅拌棒吸附萃取(SBSE)、填充吸附剂微萃取(MEPS)、移液器尖端固相萃取(PT-SPE)、一次性移液器萃取(DPX)、分散微固相萃取(d-µ-SPE)和磁性固相萃取(MSPE)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a2/11314039/d172b4e79707/molecules-29-03661-g001.jpg

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