Department of Chemistry, Faculty of Science, University of Babylon, Babylon, Iraq.
Department of Chemistry, College of Science, Salahaddin University-Erbil, Iraq.
Crit Rev Anal Chem. 2024;54(7):2166-2182. doi: 10.1080/10408347.2022.2160923. Epub 2022 Dec 29.
Food safety issue is becoming an international challenge for human health owing to the presence of contaminants. In this context, reliable, rapid, and sensitive detecting technology is extremely demanded to establish food safety assurance systems. MOFs (Metal-organic frameworks) are a new type of porous crystalline material with particular physical and chemical characteristics presented in food safety requirements. (Bio)sensors driven MOF materials have emerged as a promising alternative and complementary analytical techniques, owing to their great specific area, high porosity, and uniform and fine-tunable pore buildings. Nevertheless, the insufficient stability and electrical conductivity of classical MOFs limit their utilization. Employing graphene-derived nanomaterials with high functional elements as patterns for the MOF materials not only improves the structural instability and poor conductivity but also impedes the restacking and aggregation between graphene layers, thus significantly extending the MOFs application. A review of MOFs-graphene-based material used in food contamination detection is urgently needed for encouraging the advance of this field. Herein, this paper systematically outlines current breakthroughs in MOF-graphene-based nanoprobes, outlines their principles, and illustrates their employments in identifying mycotoxins, heavy metal ions, pathogens, antibiotics, and pesticides, referring to their multiplexing and sensitivity ability. The challenges and limitations of applying MOF-graphene composite for precise and efficient assessment of food were also debated. This paper would maybe offer some inspired concepts for an upcoming study on MOF-based composites in the food security context.
食品安全问题由于污染物的存在,正成为人类健康的国际挑战。在这种情况下,建立食品安全保障体系极其需要可靠、快速和敏感的检测技术。MOFs(金属有机骨架)是一种新型的多孔结晶材料,具有特殊的物理和化学特性,符合食品安全要求。(生物)传感器驱动的 MOF 材料作为一种有前途的替代和互补分析技术出现,由于其具有大的比表面积、高孔隙率、均匀和精细可调的孔结构。然而,经典 MOFs 的稳定性和导电性不足限制了它们的应用。采用具有高功能元素的石墨烯衍生纳米材料作为 MOF 材料的图案,不仅提高了结构的不稳定性和导电性差,而且阻碍了石墨烯层之间的堆积和聚集,从而显著扩展了 MOFs 的应用。迫切需要对用于食品污染检测的 MOFs-基于石墨烯的材料进行综述,以鼓励该领域的发展。本文系统地概述了基于 MOF-石墨烯的纳米探针的最新突破,概述了它们的原理,并说明了它们在识别真菌毒素、重金属离子、病原体、抗生素和农药方面的应用,以及它们的多重检测和灵敏度能力。还讨论了应用 MOF-石墨烯复合材料对食品进行精确和高效评估的挑战和局限性。本文可能为未来基于 MOF 的复合材料在食品安全方面的研究提供一些启示。