Mercury(编程语言)
荧光
检出限
离子
化学
氮化碳
无机化学
量子产额
光化学
材料科学
有机化学
色谱法
催化作用
物理
光催化
程序设计语言
量子力学
计算机科学
作者
Hongmei Zhao,Tao Sun,Jiang Wang,Aiju Xu,Meilin Jia,Bin Xue
标识
DOI:10.1016/j.dyepig.2022.110739
摘要
Selective and sensitive analysis of mercury (II) ions is a challenging topic in fluorescent sensors. Herein, we obtained a new selective mercury (II) ion fluorescence sensor by converting microscale hollow-tube-structured phosphorus-doped polymeric carbon nitride into phosphorus-doped carbon nitride oligomers with needle-like nanostructures by a hydrothermal reaction . The unique oligomeric microstructure and surface-rich terminal amino and hydroxyl functional groups of the fluorescence sensor synergistically endow it with selective quenching of mercury (II) ions. This phosphor-doped carbon nitride oligomer-based mercury (II) ion-selective fluorescence sensor achieves a minimum detection limit of 0.35 nmol L −1 in the range from 1–100 nmol L −1 (correlation coefficient of 0.9976) and a quantum yield of 16.6%. The detection of mercury (II) ions in actual shrimp samples demonstrated the sensitivity and accuracy of this fluorescence sensor. This work provides a new possibility for developing green and inexpensive mercury (II) ion-selective fluorescent sensors. • Facile synthesis of nanoneedle-like phosphorus-doped carbon nitride oligomers. • A P–OCN fluorescence sensor based on selective quenching towards Hg 2+ . • The lowest detection limit of Hg 2+ can reach 0.35 nmol L −1 .
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