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罗丹明 6G-PAH 探针用于重金属:荧光检测、生物成像和固相传感应用。

Rhodamine 6G-PAH probes for heavy metal: Fluorescence detection, bioimaging, and solid-phase sensing application.

机构信息

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.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125070. doi: 10.1016/j.saa.2024.125070. Epub 2024 Sep 2.

Abstract

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 %.

摘要

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%。

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