A dual ligand Eu-MOF with high stability and quantum yield for the detection of trace Fe3+, CrO42- and Cr2O72- in aqueous environments.

IF 2.6 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Nanhai Zhang, Deyan Liu, Rui Zhang, Qinghe Song, Guangjun He, Shixing Wang, Libo Zhang
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引用次数: 0

Abstract

The design and preparation of fluorescent sensors for detecting toxic ions in aqueous environments are of paramount importance. In this study, a europium metal-organic framework (Eu-MOF), constructed from Eu3+, the rigid 2,2'-biphenyldicarboxylic acid (2,2'-H2bpdc) ligand, and the auxiliary 1,10-phenanthroline (Phen) ligand, was synthesized through hydrothermal synthesis. The synthesized Eu-MOF demonstrated remarkable water stability, pH stability, thermal stability, and photostability. It showed a high quantum yield of 42.6%, along with an average fluorescence lifetime of 0.9002 ms, which could enhance its sensitivity when employed as a fluorescent probe. The Eu-MOF could function as a fluorescent probe to quantitatively detect trace amounts of Fe3+, CrO42- and Cr2O72-via fluorescence quenching. Their detection sensitivities are 1.527 × 104 M-1, 1.378 × 104 M-1 and 1.463 × 104 M-1 respectively, with detection limits as low as 0.28 μM, 0.19 μM and 0.09 μM. Additionally, the Eu-MOF sensor exhibited excellent selectivity, anti-interference ability, repeatability (after undergoing five cycles) and practical feasibility. Furthermore, a detailed investigation of its fluorescence properties and sensing mechanisms was carried out. Based on density functional theory calculations, two energy transfer pathways in the process of Eu3+ ion luminescence sensitized by the double ligands 2,2'-H2bpdc and Phen were identified. The fluorescence sensing mechanism of the Eu-MOF for detecting Fe3+, CrO42- and Cr2O72- involved photoinduced electron transfer from the antenna ligand to the organic molecules and competitive absorption of excitation energy. Owing to its high stability and sensitivity, the Eu-MOF holds great potential for practical applications as a sensor for Fe3+, CrO42- and Cr2O72- in aqueous environments.

一种具有高稳定性和量子产率的双配体Eu-MOF用于水中痕量Fe3+, CrO42-和Cr2O72-的检测。
设计和制备用于检测水环境中有毒离子的荧光传感器是至关重要的。本研究以刚性的2,2′-联苯二甲酸(2,2′-H2bpdc)配体Eu3+和辅助的1,10-菲罗啉(Phen)配体为原料,通过水热合成了铕金属有机骨架(Eu-MOF)。所合成的Eu-MOF具有良好的水稳定性、pH稳定性、热稳定性和光稳定性。结果表明,该材料的量子产率高达42.6%,平均荧光寿命为0.9002 ms,作为荧光探针可以提高其灵敏度。Eu-MOF可以作为荧光探针,通过荧光猝灭,定量检测痕量的Fe3+、CrO42-和cr2o72。检测灵敏度分别为1.527 × 104 M-1、1.378 × 104 M-1和1.463 × 104 M-1,检出限低至0.28 μM、0.19 μM和0.09 μM。此外,Eu-MOF传感器具有良好的选择性、抗干扰能力、重复性(经过5个循环)和实际可行性。此外,还对其荧光特性和传感机理进行了详细的研究。基于密度泛函理论计算,确定了双配体2,2′-H2bpdc和Phen致敏Eu3+离子发光过程中的两条能量传递途径。Eu-MOF检测Fe3+、CrO42-和Cr2O72-的荧光传感机制涉及从天线配体到有机分子的光诱导电子转移和激发能的竞争吸收。由于其高稳定性和高灵敏度,Eu-MOF作为水环境中Fe3+, CrO42-和Cr2O72-的传感器具有很大的实际应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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