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On the combination of luminescent rare earth MOF and rhodamine dopant with two sensing channels for picric acid

DOI:10.1016/j.saa.2019.01.037 期刊:Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 出版年份:2019 更新时间:2025-09-19 17:15:36
摘要: The present paper reported a hybrid structure for the optical recognition of PA (picric acid). This dye-MOF structure, named as R6h@EuBTC, consisted of a supporting matrix based on rare earth MOF and a sensing probe based on rhodamine dye, which was con?rmed using XRD, IR, thermal and photophysical analysis. R6h@EuBTC's rhodamine absorption in visible region was enhanced by increasing PA concentrations, showing obvious color change and consequently colorimetric sensing. R6h@EuBTC's rhodamine emission component was increased by increasing PA concentrations, while its Eu emission component was slightly quenched by increasing PA concentrations, which offered self-calibrated sensing signals for ratiometric ?uorescent sensing. Linear response and good selectivity were observed for both sensing channels with LOD of 3.9 μM. R6h@EuBTC's sensing mechanism towards PA was the combination of two procedures, which were the emission turn on effect of rhodamine component triggered by PA-released protons and the emission turn off effect of Eu component caused by its electron transfer procedure to PA, respectively. R6h@EuBTC's novelty was its two sensing channels and the practicability of naked eye detection.
作者: YiLei Fan,XiangWei Cheng,Guiying Xue,JianBing Wu,ZhongPing Huang
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Designing a hybrid dye-MOF structure for optical recognition of picric acid (PA) to address the need for simple, sensitive, and selective detection methods for explosives and environmental monitoring.

The hybrid structure R6h@EuBTC successfully provides two sensing channels (colorimetric and ratiometric fluorescent) for PA detection with good linearity, selectivity, and low LOD (3.9 μM). The sensing mechanism involves proton-induced emission turn-on for rhodamine and electron transfer-induced emission turn-off for Eu components. The novelty lies in dual sensing capabilities and practicality for naked-eye detection, with recommendations for future enhancements in sensitivity and range.

The working range for sensing is limited to PA concentrations up to 140 μM, beyond which sensing capacity is exhausted. The sensitivity for ratiometric fluorescent sensing is lower than for colorimetric sensing, and further improvements in sensitivity and widened working range are needed.

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