Department of Advanced Technology and Chemistry, Institute of Chemistry, Military University of Technology, Warsaw, Poland.
Crit Rev Anal Chem. 2020;50(5):445-471. doi: 10.1080/10408347.2019.1653165. Epub 2019 Nov 8.
In this review, the applications of graphene and its derivatives in the chemical analysis have been described. The properties of graphene materials which are essential for their use in chemical and biochemical analysis are characterized. The materials are used in sensors and biosensors, in electrochemistry, in chromatography and in the sample preparation techniques. Chemical and electrochemical sensors containing graphene materials are useful devices for detecting some chemical and biochemical compounds. Chromatographic columns for HPLC with graphene containing stationary phases may be used for separation of polar and nonpolar components of some specific mixtures. Graphene materials could be successfully employed during sample preparation for analysis with SPE, magnetic SPE, and SPME techniques. HighlightsThe review of the applications of graphene (G) and its derivatives, graphene oxide (GO) and reduced graphene oxide (rGO), in chemical and biochemical analysis is proposed.The electron donor-acceptor and proton donor-acceptor interactions for the graphene based materials - analytes systems and their impact on the analysis results are discussed, particularly: i) in electrochemistry,ii) in chromatography,iii) in modern sample preparation techniquesiv) in sensors of different types.The essence of the thermal stability and the nomenclature of the graphene based materials in their different applications in chemical systems of different classes was discussed (and suggested).The benefits of using SPME fibers with immobilized graphene materials have been presented in detail.
在这篇综述中,描述了石墨烯及其衍生物在化学分析中的应用。对石墨烯材料在化学和生化分析中应用所必需的特性进行了表征。这些材料被用于传感器和生物传感器、电化学、色谱法和样品制备技术中。含有石墨烯材料的化学和电化学传感器是用于检测某些化学和生化化合物的有用设备。含有石墨烯的 HPLC 色谱柱用于分离某些特定混合物中极性和非极性成分。在 SPE、磁性 SPE 和 SPME 等样品制备技术中,石墨烯材料可成功用于分析前的样品制备。
亮点
提出了石墨烯 (G) 及其衍生物、氧化石墨烯 (GO) 和还原氧化石墨烯 (rGO) 在化学和生化分析中的应用综述。
讨论了基于石墨烯的材料-分析物系统的电子供体-受体和质子供体-受体相互作用及其对分析结果的影响,特别是:
i)电化学,
ii)色谱法,
iii)现代样品制备技术,
iv)不同类型的传感器。
讨论了不同类别化学体系中不同应用的石墨烯基材料的热稳定性本质和命名法(并提出建议)。
详细介绍了使用固定化石墨烯材料的 SPME 纤维的优点。