School of Pharmaceutical and Chemical Engineering, ChengXian College, Southeast University, Nanjing 210088, PR China.
College of Food Science and Light Industry, Nanjing Tech University, Nanjing 211816, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125070. doi: 10.1016/j.saa.2024.125070. Epub 2024 Sep 2.
Four rhodamine 6G-PAH probes with pyrene (R6G-Pyr), anthracene (R6G-Ant), acenaphthene (R6G-Acp) or phenanthrene (R6G-PA) as fluorophore were designed and synthesized for Hg(II) detection. Probe R6G-PA, which had the lowest detection limit of 0.84 nmol/L, displayed the best fluorescence performance as compared to the other three probes. This type of probe had good anti-interference properties against most common metal ions except Cu(II). Metal Cu(II) had a certain quenching effect on the fluorescence generated by Hg(II), with a minimum detection limit of 0.31 nmol/L (for R6G-Acp), indicating its potential practicability for Cu(II) detection. The structure-fluorescence relationship was discussed based on density functional theory (DFT) calculations, and R6G-PA + Hg(II), which had the minimum dihedral angle between polycyclic aromatic rings and rhodamine spiro ring, produced the strongest π-π accumulation and provided the brightest fluorescence. Probe R6G-PA was successfully employed for fluorescence detection of Hg(II) in biological samples. Its solid-phase sensor PS@R6G-PA was developed by immobilizing R6G-PA on PS microspheres for the determination of Hg(II) in water and food samples, with excellent reproducibility and fluorescence "on/off" response. The relative error of the spiked recovery rate was less than 10 %.
四种罗丹明 6G-PAH 探针,带有芘(R6G-Pyr)、蒽(R6G-Ant)、苊(R6G-Acp)或菲(R6G-PA)作为荧光团,被设计并合成用于检测 Hg(II)。与其他三种探针相比,具有最低检测限 0.84 nmol/L 的探针 R6G-PA 显示出最佳的荧光性能。这种探针对大多数常见金属离子具有良好的抗干扰特性,除了 Cu(II)。金属 Cu(II) 对 Hg(II) 产生的荧光有一定的猝灭作用,检测限最低为 0.31 nmol/L(对于 R6G-Acp),表明其对 Cu(II) 检测具有潜在的实用性。基于密度泛函理论(DFT)计算讨论了结构-荧光关系,并且 R6G-PA + Hg(II) 具有多环芳烃环和罗丹明螺环之间的最小二面角,产生最强的π-π堆积并提供最亮的荧光。探针 R6G-PA 成功用于生物样品中 Hg(II) 的荧光检测。通过将 R6G-PA 固定在 PS 微球上,制备了 R6G-PA 的固相传感器 PS@R6G-PA,用于水和食品样品中 Hg(II) 的测定,具有良好的重现性和荧光“开/关”响应。加标回收率的相对误差小于 10%。