Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Key Laboratory of Vegetables Quality and Safety Control, Ministry of Agriculture and Rural Affairs of China, Beijing 100081, China.
College of Life Sciences and Engineering, Hebei University of Engineering, Handan 056021, China.
Sensors (Basel). 2018 Nov 27;18(12):4166. doi: 10.3390/s18124166.
Due to their unique optical properties, narrow size distributions, and good biological affinity, gold nanoparticles have been widely applied in sensing analysis, catalytic, environmental monitoring, and disease therapy. The color of a gold nanoparticle solution and its maximum characteristic absorption wavelength will change with the particle size and inter-particle spacing. These properties are often used in the detection of hazardous chemicals, such as pesticide residues, heavy metals, banned additives, and biotoxins, in food. Because the gold nanoparticles-colorimetric sensing strategy is simple, quick, and sensitive, this method has extensive applications in real-time on-site monitoring and rapid testing of food quality and safety. Herein, we review the preparation methods, functional modification, photochemical properties, and applications of gold nanoparticle sensors in rapid testing. In addition, we elaborate on the colorimetric sensing mechanisms. Finally, we discuss the advantages and disadvantages of colorimetric sensors based on gold nanoparticles, and directions for future development.
由于其独特的光学性质、窄的尺寸分布和良好的生物亲和力,金纳米粒子已广泛应用于传感分析、催化、环境监测和疾病治疗。金纳米粒子溶液的颜色及其最大特征吸收波长会随粒子尺寸和粒子间间距而变化。这些特性常用于检测食品中的危险化学品,如农药残留、重金属、禁用添加剂和生物毒素。由于金纳米粒子比色传感策略简单、快速、灵敏,因此该方法在食品质量和安全的实时现场监测和快速检测中具有广泛的应用。在此,我们综述了金纳米粒子传感器在快速检测中的制备方法、功能修饰、光化学性质和应用。此外,我们还详细阐述了比色传感机制。最后,我们讨论了基于金纳米粒子的比色传感器的优缺点以及未来的发展方向。