4.7 Review

AIEgens: An emerging fluorescent sensing tool to aid food safety and quality control

期刊

出版社

WILEY
DOI: 10.1111/1541-4337.12591

关键词

aggregation-induced emission; fluorescence; food safety detection; quality control; sensor

资金

  1. National Basic Research Programof China (973 Program) [2018YFC1602202, 2018YFC1602505, 2018YFC1602203]
  2. Research Grants Council of HongKong [N_HKUT609/19, C6009-17G, A-HKUST 605/16]
  3. Interdisciplinary Innovation Fund ofNatural Science, Nanchang University [9166-27060003ZD01]
  4. National Natural Science Foundation of China [21788102, 31760485, 31471648, 31901780]
  5. Innovation and Technology Commission [ITCCNERC14SC01]

向作者/读者索取更多资源

As a global public health problem, food safety has attracted increasing concern. To minimize the risk exposure of food to harmful ingredients, food quality and safety inspection that covers the whole process of from farm to fork is much desired. Fluorescent sensing is a promising and powerful screening tool for sensing hazardous substances in food and thus plays a crucial role in promoting food safety assurance. However, traditional fluorphores generally suffer the problem of aggregation-caused quenching (ACQ) effect, which limit their application in food quality and safety inspection. In this regard, luminogens with aggregation-induced emission property (AIEgens) showed large potential in food analysis since AIEgens effectively surmount the ACQ effect with much better detection sensitivity, accuracy, and robustness. In this contribution, we review the latest developments of food safety monitoring by AIEgens, which will focus on the molecular design of AIEgens and their sensing principles. Several examples of AIE-based sensing applications for screening food contaminations are highlighted, and future perspectives and challenges in this emerging field are tentatively elaborated. We hope this review can motivate new research ideas and interest to aid food safety and quality control, and facilitate more collaborative endeavors to advance the state-of-the-art sensing developments and reduce actual translational gap between laboratory research and industrial production.

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