Shen Yanting, Zhao Yuhui, Zhu Yanyan, Wang Jing
Postdoctoral Mobile Station of Basic Medicine, Hebei Medical University, Shijiazhuang, 050017, People's Republic of China.
School of Pharmacy, Key Laboratory of Innovative Drug Development and Evaluation, Hebei Medical University, Shijiazhuang, 050017, People's Republic of China.
Mikrochim Acta. 2021 Dec 7;189(1):18. doi: 10.1007/s00604-021-05119-y.
A novel colorimetric/fluorescent dual-mode nanosensor for Hg detection was constructed using expanded mesoporous silica (EMSN)-encapsulated ultrasmall platinum nanoclusters (EMSN@Pt NCs) with improved peroxidase-like and stable fluorescent activities. The sensing technique was based on the mechanism that the peroxidase mimetic activity and fluorescence intensity of EMSN@Pt NCs can be inhibited in the presence of Hg. In this sensing platform, a linear range of 5-50 nM with a detection limit of 1.78±0.38 nM and quantification limit of 5.93 nM was obtained via fluorescent analysis. A linear calibration curve from 0.25 to 200 nM with a detection limit of 8.25±0.51 nM and quantification limit of 27.47 nM was achieved via colorimetric analysis. The proposed dual-mode probe possesses excellent selectivity and reliability for Hg detection, which can function as an efficient nanosensor for the quantitative determination of Hg in Pueraria lobata.
利用包裹有超小铂纳米簇(EMSN@Pt NCs)的介孔二氧化硅(EMSN)构建了一种用于汞检测的新型比色/荧光双模式纳米传感器,该纳米传感器具有增强的类过氧化物酶活性和稳定的荧光活性。传感技术基于以下机制:在汞存在的情况下,EMSN@Pt NCs的过氧化物酶模拟活性和荧光强度会受到抑制。在这个传感平台上,通过荧光分析获得了5-50 nM的线性范围,检测限为1.78±0.38 nM,定量限为5.93 nM。通过比色分析获得了0.25至200 nM的线性校准曲线,检测限为8.25±0.51 nM,定量限为27.47 nM。所提出的双模式探针在汞检测方面具有优异的选择性和可靠性,可作为一种高效的纳米传感器用于定量测定葛根中的汞。