Yao Jiawen, Zhang Ruohan, Batool Saliha, Wang Zhengling, Wahab Abdul
Department of Physics, Jiangsu University, Zhenjiang, 212013, China.
Department of Environmental Sciences, Fatima Jinnah Women University, Rawalpindi, Pakistan.
Mikrochim Acta. 2025 Aug 22;192(9):614. doi: 10.1007/s00604-025-07410-8.
Quantum dots (QDs), first discovered in the 1980s, have rapidly evolved into one of the most promising classes of nanomaterials due to their exceptional optical tunability, quantum confinement effects, and surface modifiability. This review provides a structured overview of QDs starting from their historical development and fundamental properties, including size-dependent fluorescence (FL), high photostability, and surface chemistry. The synthesis and preparation methods are systematically discussed. The paper then explores key sensing mechanisms, including FL quenching, immunoassays, antibacterial action, and the toxicity profile of QDs. To improve the performance and specificity of QD-based sensors, several optimization strategies are presented, including heteroatom doping, hybridization with other nanomaterials, integration with molecularly imprinted polymers (MIPs), and the development of dual-mode FL-colorimetric systems. The practical applications of these enhanced QD sensors in food safety and environmental monitoring are highlighted, particularly for the detection of contaminants such as antibiotic residues, pesticides, and harmful gases. By combining fundamental science with applied sensor development, this review illustrates the vast potential of QDs in real-world monitoring scenarios while also addressing key challenges and future directions.
量子点(QDs)于20世纪80年代首次被发现,由于其卓越的光学可调性、量子限域效应和表面可修饰性,已迅速发展成为最具前景的纳米材料类别之一。本综述从量子点的历史发展和基本性质入手,包括尺寸依赖性荧光(FL)、高光稳定性和表面化学等方面,对其进行了结构化概述。系统地讨论了量子点的合成和制备方法。接着,本文探讨了关键传感机制,包括荧光猝灭、免疫分析、抗菌作用以及量子点的毒性概况。为了提高基于量子点的传感器的性能和特异性,提出了几种优化策略,包括杂原子掺杂、与其他纳米材料杂交、与分子印迹聚合物(MIPs)整合以及开发双模式荧光比色系统。重点介绍了这些增强型量子点传感器在食品安全和环境监测中的实际应用,特别是用于检测抗生素残留、农药和有害气体等污染物。通过将基础科学与应用传感器开发相结合,本综述阐述了量子点在实际监测场景中的巨大潜力,同时也探讨了关键挑战和未来发展方向。