Jin Yao, Ai Wenhui, Chen Ge, Zhang Guodong, Wang Fang, Zhou Ting, Zhang Zhiqing, Wang Xiufeng
Department of Chemistry, College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao, 266580, China.
Mikrochim Acta. 2024 Oct 14;191(11):666. doi: 10.1007/s00604-024-06758-7.
CuO nanoparticles with good water solubility and uniform particle size were successfully prepared. Interestingly, the oxidase-like activity of CuO NPs was continuously enhanced by the addition of thiourea (TU), and the enzyme activity was further enhanced by the addition of aluminum ion (Al). By systematically exploring and optimizing the experimental conditions, including the key parameters such as temperature, reaction time, and pH, a fluorescence-colorimetric dual-mode sensing system based on CuO nanoparticles was constructed. The detection range of TU and Al were 1-100 µM and 1-100 µM, respectively, and the selectivity and precision of detection were further improved. In addition, the catalytic mechanism of CuO NPs as oxidase-like catalysts and the specific process in the reaction were investigated. Finally, the nano-sensing system was successfully applied to the analysis of three real environmental samples, namely, tap water, lake water and river water, which provided an effective new strategy for the future development of nano-sensing technology for TU and Al.
成功制备了具有良好水溶性和均匀粒径的氧化铜纳米颗粒。有趣的是,通过添加硫脲(TU),氧化铜纳米颗粒的类氧化酶活性不断增强,而添加铝离子(Al)后酶活性进一步增强。通过系统地探索和优化实验条件,包括温度、反应时间和pH等关键参数,构建了基于氧化铜纳米颗粒的荧光比色双模式传感系统。TU和Al的检测范围分别为1-100μM和1-100μM,检测的选择性和精度进一步提高。此外,研究了氧化铜纳米颗粒作为类氧化酶催化剂的催化机制以及反应中的具体过程。最后,该纳米传感系统成功应用于自来水、湖水和河水三种实际环境样品的分析,为未来TU和Al纳米传感技术的发展提供了一种有效的新策略。