食品科学 ›› 2025, Vol. 46 ›› Issue (24): 53-64.doi: 10.7506/spkx1002-6630-20250618-136

• 食品安全快速检测专栏 • 上一篇    

功能化纳米材料推动食品中新污染物快速分析:从设计到应用

魏庆,刘嫣,刘慧琳   

  1. (1.北京工商大学 中国轻工业食品品质数智化动态感知重点实验室,北京 100048;2.北京工商大学轻工科学与工程学院,北京 100048)
  • 发布日期:2025-12-26
  • 基金资助:
    国家重点研发计划“食品营养与安全关键技术研发”专项(2023YFF1104801)

Functionalized Nanomaterials Promote Rapid Analysis of New Contaminants in Foods: from Design to Application

WEI Qing, LIU Yan, LIU Huilin   

  1. (1. Key Laboratory of Digital-Intelligence and Dynamic Perception for Food Quality of China Light Industry, Beijing Technology and Business University, Beijing 100048, China; 2. School of Light Industry Science and Engineering, Beijing Technology and Business University, Beijing 100048, China)
  • Published:2025-12-26

摘要: 近年来,新污染物在食品链中的暴露风险日益突出。传统检测技术虽具有高灵敏度和准确性,但在复杂基质中仍存在检测效率低、前处理繁琐和成本高等局限。功能化纳米材料凭借高比表面积、可调控表面化学性质和优异信号响应特性,为新污染物快速分析提供了新的材料基础。本文系统总结了各类纳米材料在新污染物富集、信号转导及检测平台集成中的应用特点,并结合自下而上合成、后修饰和多材料协同3 类策略,阐释了功能化设计在性能优化中的作用。结合不同类型新污染物的食品分析实例,讨论了这些材料在提升检测灵敏度、缩短检测时间及实现平台化集成方面的应用进展。最后,提出了面向现场快速检测和风险防控的可实施技术路径,为未来食品中新污染物的监测和控制提供参考。

关键词: 纳米材料;新污染物;食品安全;快速检测

Abstract: In recent years, the exposure risk of emerging contaminants in the food chain has become increasingly prominent. Although conventional analytical techniques are sensitive and accurate, they remain limited in complex matrices with low detection efficiency, cumbersome sample pretreatment, and high operational costs. Functionalized nanomaterials, with their high specific surface area, tunable surface chemistry, and superior signal responsiveness, provide a new material foundation for the rapid analysis of emerging contaminants. This review systematically summarizes the application characteristics of various nanomaterials in contaminant enrichment, signal transduction, and analytical platform integration. It further elucidates the role of functional design in performance optimization from three aspects: bottom-up synthesis, post-synthetic modification, and multi-material synergy. Based on case studies on the analysis of different emerging contaminants in foods, the review discusses recent advances in the application of these materials for improving the detection sensitivity, reducing the detection time, and achieving platform integration. Finally, a feasible technical roadmap is proposed for rapid on-site detection and risk prevention, with the aim of offering insights for future monitoring and control of emerging contaminants in foods.

Key words: nanomaterials; emerging pollutants; food safety; rapid detection

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