Design of a Eu3+-post-synthetic modified MOF ratiometric fluorescent probe for recyclable recognition of light green SF

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Kuiyu Yi and Qifeng Zhao
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Abstract

Light green SF (LGSF), a pervasive dye posing a grave risk to human health, urgently demands the creation of a straightforward, swift, sensitive, intuitive, and recyclable detection method. In this research endeavor, we have innovatively designed a Eu3+@MOF-1 ratiometric fluorescent (RF) probe, utilizing a post-synthetic modification (PSM) approach, for the efficient detection of LGSF in lake water and green-colored beverages. This probe exhibits distinctive fluorescence emission properties, characterized by dual emission peaks at 443 nm and 614 nm. In the presence of LGSF, the emission intensity at 443 nm remains constant, functioning as an internal reference, while the emission intensity at 614 nm decreases progressively. This shift is attributed to the principle of fluorescence resonance energy transfer (FRET), where LGSF effectively quenches the fluorescence of Eu3+@MOF-1 at 614 nm, thereby enabling RF detection of LGSF. Notably, the luminescence color of Eu3+@MOF-1 undergoes a significant change from red to blue upon LGSF addition, which is readily observable by the naked eye. A thorough analysis of the fluorescence quenching mechanism of LGSF on Eu3+@MOF-1 has been conducted. Furthermore, the Eu3+@MOF-1 RF probe exhibits robustness, enduring five testing cycles with a clear transition from red to blue in each iteration, underscoring its high stability and reproducibility. Experimental findings reveal that the Eu3+@MOF-1 RF probe exhibits remarkable specificity, sensitivity, and exceptional regeneration capabilities for LGSF detection. This RF probe offers a potent tool for monitoring water pollution and identifying illicit additions of LGSF in yellow-green beverages, highlighting its broad spectrum of application prospects.

Abstract Image

可循环识别浅绿色SF的Eu3+合成后改性MOF比例荧光探针的设计
浅绿色SF (LGSF)是一种普遍存在的染料,对人类健康构成严重威胁,迫切需要创造一种简单、快速、敏感、直观、可回收的检测方法。在这项研究中,我们创新地设计了一种Eu3+@MOF-1比率荧光(RF)探针,利用合成后修饰(PSM)方法,用于有效检测湖水和绿色饮料中的LGSF。该探针具有独特的荧光发射特性,在443 nm和614 nm处具有双发射峰。在LGSF存在下,443 nm处的发射强度保持不变,作为内参,而614 nm处的发射强度逐渐降低。这种转变归因于荧光共振能量转移(FRET)原理,其中LGSF有效猝灭Eu3+@MOF-1在614 nm处的荧光,从而实现了对LGSF的RF检测。值得注意的是,加入LGSF后,Eu3+@MOF-1的发光颜色发生了明显的由红色变为蓝色的变化,这一变化很容易被肉眼观察到。深入分析了LGSF在Eu3+@MOF-1上的荧光猝灭机理。此外,Eu3+@MOF-1 RF探针表现出鲁棒性,可以承受5个测试周期,每次迭代从红色到蓝色的清晰过渡,强调了其高稳定性和可重复性。实验结果表明,Eu3+@MOF-1射频探针在检测LGSF方面具有显著的特异性、敏感性和卓越的再生能力。该射频探针为监测水污染和识别黄绿色饮料中LGSF的非法添加提供了强有力的工具,突出了其广泛的应用前景。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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