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A novel ratiometric fluorescence sensor based on lanthanide-functionalized MOF for Hg2+ detection.

Authors :
Hao Guo, Ning Wu
Peng, Liping
Chen, Yuan
Liu, Yinsheng
Li, Cuiliu
Zhang, Hao
Yang, Wu
Source :
Talanta. Dec2022, Vol. 250, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

Post-synthesis modification is an effective strategy for the preparation of rare earth organic framework materials and the derivation of high-performance functional materials. Here, we report the preparation of a dual emission Ln-MOF material (Eu-Ca-MOF) using Ca-MOF as the parent framework and introducing Eu3+ ions into its channels through post-synthesis modification. Eu-Ca-MOF has good photoluminescence properties and can be used as a ratiometric fluorescence sensor (I 381 /I 590) to detect Hg2+ ions in water sensitively. The characteristic of Eu-Ca-MOF obtained is that when the material is dispersed in an aqueous solution containing Hg2+ ions, the characteristic emission of the ligand at 381 nm is enhanced, while the characteristic emission of Eu3+ at 590 nm is quenched. The peak-to-height ratio of the two emissions can be used to achieve highly sensitive detection of Hg2+ ions even in the presence of other potentially competing analytes. In addition, Hg2+ induces Eu-Ca-MOF to produce a significant ratiometric luminescence response, which changes its luminescence color from red to blue, which is beneficial to visual analysis of naked eyes. At the same time, Eu-Ca-MOF has a wider detection range (0.02–200 μM), and a lower limit detection (2.6 nM) for Hg2+ ions. The lanthanide compounds prepared by post-synthetic modification provide an effective synthesis strategy for photoluminescent materials. [Display omitted] • A novel ratiometric fluorescent sensor Eu-Ca-MOF is prepared by post-synthesis modification. • The ratiometric fluorescence sensor is used for sensitive detection of Hg2+. • Significant color change under UV-lamp makes it adequate to visual analysis of Hg2+. • The post-synthetic modification is an efficient strategy for function-oriented MOFs design. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00399140
Volume :
250
Database :
Academic Search Index
Journal :
Talanta
Publication Type :
Academic Journal
Accession number :
159233962
Full Text :
https://doi.org/10.1016/j.talanta.2022.123710