食品科学 ›› 2024, Vol. 45 ›› Issue (22): 269-279.doi: 10.7506/spkx1002-6630-20240427-252

• 专题论述 • 上一篇    下一篇

贵金属纳米复合材料电致化学发光传感器在食品重金属检测中的研究进展

王秀雯, 袁景利, 张艳, 张晓波, 曹际娟   

  1. (1.大连民族大学生命科学学院,生物技术与资源利用教育部重点实验室,辽宁 大连 116600;2.国家粮食和物资储备局标准质量中心,北京 100834)
  • 出版日期:2024-11-25 发布日期:2024-11-05
  • 基金资助:
    “十四五”国家重点研发计划重点专项(2021YFF0601902);辽宁省教育厅青年项目(JYTQN2023452); 辽宁省科技计划联合计划基金项目(2023JH2/101700030);中央高校基本科研业务费项目(04442024024)

Research Progress on Noble-Metal Nanocomposite Electrochemiluminescence Sensors for the Detection of Heavy Metals in Foods

WANG Xiuwen, YUAN Jingli, ZHANG Yan, ZHANG Xiaobo, CAO Jijuan   

  1. (1. Key Laboratory of Biotechnology and Bioresources Utilization, College of Life Science, Dalian Minzu University, Dalian 116600, China; 2. National Food and Strategic Reserves Administration Standards and Quality Center, Beijing 100834, China)
  • Online:2024-11-25 Published:2024-11-05

摘要: 随着工业化的加速,重金属污染问题日益严重,对人类健康构成了巨大的威胁。近年来,各种生物传感器被广泛用于重金属检测,其中,电致化学发光传感器因其高灵敏度、快速响应和实时检测能力而受到研究者的关注。贵金属纳米复合材料因其独特的物理化学性质,在提高传感器性能方面发挥着重要作用。本文总结了基于贵金属纳米复合材料的电致化学发光传感器在重金属检测中的最新研究进展,强调了材料在提高传感器灵敏度等方面的作用,讨论了其在重金属检测中的性能表现,探讨了传感器的设计原理、特异性等,并展望了未来通过技术进步提升传感器性能以及优化微流控平台的应用,以期为食品安全检测的挑战提供更有效的解决方案。

关键词: 重金属;电致化学发光传感器;贵金属纳米复合材料;快速检测;传感性能

Abstract: With the acceleration of industrialization, heavy metal pollution has become increasingly severe, posing a significant threat to human health. In recent years, various biosensors have been widely used for heavy metal detection. Among them, electrochemiluminescence (ECL) sensors have garnered attention due to their high sensitivity, rapid response, and real-time detection capability. Noble-metal nanocomposite materials play an important role in enhancing sensor performance due to their unique physicochemical properties. This paper summarizes the latest research progress on ECL sensors based on noble-metal nanocomposite materials in heavy metal detection. It emphasizes the role of the nanocomposite materials in improving sensor sensitivity and discusses their performance in heavy metal detection, as well as the design principles and specificity of ECL sensors. Furthermore, it discusses future prospects for improving sensor performance and optimizing the application of microfluidic platforms through technological advancements. We hope that this review will provide more effective solutions for challenges in food safety testing.

Key words: heavy metal; electrochemiluminescence sensors; noble-metal nanocomposites materials; rapid detection; sensing performance

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