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基于石墨烯量子点的荧光传感器在食品安全和质量评估应用中的最新进展。

Recent progress on graphene quantum dots-based fluorescence sensors for food safety and quality assessment applications.

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang, China.

College of Food and Biological Engineering, Jimei University, Xiamen, China.

出版信息

Compr Rev Food Sci Food Saf. 2021 Nov;20(6):5765-5801. doi: 10.1111/1541-4337.12834. Epub 2021 Oct 2.

Abstract

The versatile photophysicalproperties, high surface-to-volume ratio, superior photostability, higher biocompatibility, and availability of active sites make graphene quantum dots (GQDs) an ideal candidate for applications in sensing, bioimaging, photocatalysis, energy storage, and flexible electronics. GQDs-based sensors involve luminescence sensors, electrochemical sensors, optical biosensors, electrochemical biosensors, and photoelectrochemical biosensors. Although plenty of sensing strategies have been developed using GQDs for biosensing and environmental applications, the use of GQDs-based fluorescence techniques remains unexplored or underutilized in the field of food science and technology. To the best of our knowledge, comprehensive review of the GQDs-based fluorescence sensing applications concerning food quality analysis has not yet been done. This review article focuses on the recent progress on the synthesis strategies, electronic properties, and fluorescence mechanisms of GQDs. The various GQDs-based fluorescence detection strategies involving Förster resonance energy transfer- or inner filter effect-driven fluorescence turn-on and turn-off response mechanisms toward trace-level detection of toxic metal ions, toxic adulterants, and banned chemical substances in foodstuffs are summarized. The challenges associated with the pretreatment steps of complex food matrices and prospects and challenges associated with the GQDs-based fluorescent probes are discussed. This review could serve as a precedent for further advancement in interdisciplinary research involving the development of versatile GQDs-based fluorescent probes toward food science and technology applications.

摘要

多功能的光物理性质、高的比表面积与体积比、优越的光稳定性、更高的生物相容性以及活性位点的可用性,使石墨烯量子点 (GQDs) 成为在传感、生物成像、光催化、储能和柔性电子等领域应用的理想候选材料。基于 GQDs 的传感器包括发光传感器、电化学传感器、光学生物传感器、电化学生物传感器和光电化学生物传感器。尽管已经开发了许多使用 GQDs 进行生物传感和环境应用的传感策略,但基于 GQDs 的荧光技术在食品科学和技术领域的应用仍未得到充分探索或利用。据我们所知,针对与食品质量分析有关的基于 GQDs 的荧光传感应用的综合综述尚未完成。本文重点介绍了 GQDs 的合成策略、电子性质和荧光机制的最新进展。总结了各种基于 GQDs 的荧光检测策略,涉及 Förster 共振能量转移或内滤效应驱动的荧光开启和关闭响应机制,用于痕量检测食品中有毒金属离子、有毒掺杂物和禁用化学物质。讨论了与复杂食品基质的预处理步骤相关的挑战以及与基于 GQDs 的荧光探针相关的前景和挑战。这篇综述可以作为进一步发展涉及多功能基于 GQDs 的荧光探针的跨学科研究的先例,以应用于食品科学和技术。

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