Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, PR China.
Key Laboratory of Luminescent and Real-Time Analytical System (Southwest University), Chongqing Science and Technology Bureau, College of Pharmaceutical Sciences, Southwest University, Chongqing 400715, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Nov 15;301:122976. doi: 10.1016/j.saa.2023.122976. Epub 2023 Jun 4.
Here, we reported a ratiometric fluorescence strategy for the detection of phosphate (Pi) in artificial wetland water. The strategy was based on dual-ligand two-dimensional terbium-organic frameworks nanosheets (2D Tb-NB MOFs). 2D Tb-NB MOFs were prepared through blending 5-boronoisophthalic acid (5-bop), 2-aminoterephthalic acid (NH-BDC) and Tb ions at room temperature in the presence of triethylamine (TEA). The dual-ligand strategy realized dual emission originated from ligand NH-BDC and Tb ions at 424 and 544 nm, respectively. Pi could compete with ligands to coordinate Tb due to the strong binding ability between Pi and Tb, resulting in structural destruction of 2D Tb-NB MOFs, so static quenching and antenna effect between ligands and metal ions were interrupted, and emission at 424 nm was enhanced and emission at 544 nm was weakened. This novel probe had excellent linearity with Pi concentrations from 1 to 50 μmol/L; the detection limit was 0.16 μmol/L. This work revealed that mixed ligands improved sensing efficiency of MOFs by enhancing the sensitivity of the coordination between the analyte and MOFs.
在这里,我们报道了一种用于人工湿地水中磷酸盐(Pi)检测的比率荧光策略。该策略基于双配体二维铽有机骨架纳米片(2D Tb-NB MOFs)。2D Tb-NB MOFs 通过在室温下混合 5-硼基异邻苯二甲酸(5-bop)、2-氨基对苯二甲酸(NH-BDC)和 Tb 离子,在三乙胺(TEA)存在下制备。双配体策略实现了源自配体 NH-BDC 和 Tb 离子的双发射,分别在 424nm 和 544nm 处。由于 Pi 与 Tb 之间具有很强的结合能力,Pi 可以与配体竞争与 Tb 配位,导致 2D Tb-NB MOFs 的结构破坏,从而中断配体和金属离子之间的静态猝灭和天线效应,增强了 424nm 处的发射,减弱了 544nm 处的发射。这种新型探针在 1 至 50 μmol/L 的 Pi 浓度范围内具有优异的线性关系;检测限为 0.16 μmol/L。这项工作表明,混合配体通过增强分析物与 MOFs 之间的配位敏感性,提高了 MOFs 的传感效率。