ZHENG Yingdie, LIU Kai, QI Heshan, LIU Weiping. Detection of pesticide residues in water using two dual-emitting lanthanide metal-organic frameworks[J]. Chinese Journal of Pesticide Science, 2022, 24(1): 123-132. DOI: 10.16801/j.issn.1008-7303.2021.0131
    Citation: ZHENG Yingdie, LIU Kai, QI Heshan, LIU Weiping. Detection of pesticide residues in water using two dual-emitting lanthanide metal-organic frameworks[J]. Chinese Journal of Pesticide Science, 2022, 24(1): 123-132. DOI: 10.16801/j.issn.1008-7303.2021.0131

    Detection of pesticide residues in water using two dual-emitting lanthanide metal-organic frameworks

    • To optimize the limitations of the exisiting fluorescent sensors: conventional single-emitting fluorescent sensors have limited sensitivity because the single emission can be easily affected by environmental factors, and the limited sensitivity and selectivity of dual/multiple-emitting fluorescent sensors because the internal energy transfer between lanthanide ions is susceptible to environmental factors like temperature. Two dual-emitting lanthanide metal-organic frameworks (Ln-MOFs) were utilized to achieve qualitative and quantitative detection of different pesticides simultaneously in water. Tb-MOF and Eu-MOF2 were synthesized, and their structures and properties were characterized. The prepared Ln-MOFs were used for qualitative and quantitative analysis of six pesticides (napropamide, picloram, imazethapyr, tebuconazole, flutriafol and benalaxyl). Combined with the UV-visible absorption spectra of each pesticide, the results showed that the energy transfer efficiency between Ln3+ and organic ligand in Ln-MOFs was regulated through interaction and competitive excitation energy absorption, and different pesticides had different effects on the energy transfer efficiency of organic ligand to Tb3+ and organic ligand to Eu3+. The values of lg(I545/I616) and lg(I545/I340) had a good linear relationship with the concentration, and R2 was above 0.97. This study provides a feasible strategy for developing a convenient, effective and universal ratiometric fluorescent sensor.
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