Detection and Sorption of Heavy Metal Ions in Aqueous Media by a Fluorescent Zr(IV) Metal–Organic Framework Functionalized with 2-Picolylamine Receptor Groups

化学 吸附 水溶液中的金属离子 螯合作用 荧光 水溶液 吸附剂 金属 配体(生物化学) 部分 无机化学 金属有机骨架 核化学 吸附 有机化学 受体 物理 量子力学 生物化学
作者
Stavros A. Diamantis,Anastasia D. Pournara,Eirini D. Koutsouroubi,Constantinos Moularas,Yiannis Deligiannakis,Gerasimos S. Armatas,Antonios G. Hatzidimitriou,Manolis J. Manos,Theodore Lazarides
出处
期刊:Inorganic Chemistry [American Chemical Society]
卷期号:61 (20): 7847-7858 被引量:26
标识
DOI:10.1021/acs.inorgchem.2c00434
摘要

Increasing global environmental pollution due to heavy metal ions raises the importance of research on new multifunctional materials for simultaneous detection and removal of these contaminants from water resources. In this study, we report a microporous 8-connected Zr4+ metal-organic framework (MOF) based on a terephthalate ligand decorated with a chelating 2-picolylamine side group (dMOR-2), which shows highly efficient fluorescence sensing and sorption of heavy metal cations. We demonstrate by detailed fluorescence studies the ability of a water-dispersible composite of dMOR-2 with polyvinylpyrrolidone for real-time detection of Cu2+, Pb2+, and Hg2+ in aqueous media. The limits of detection were found to be below 2 ppb for these species, while the system's performance is not affected by the presence of other potentially competitive ions. In addition, sorption studies showed that a composite of dMOR-2 with calcium alginate (dMOR-2@CaA) is an excellent sorbent for Pb2+ and Cu2+ ions with capacities of 376 ± 15 and 117 ± 4 mg per gram of dMOR-2@CaA, respectively, while displaying the capability for simultaneous removal of various heavy metal ions in low initial concentrations and in the presence of large excesses of other cationic species. Structural and spectroscopic studies with model ligands analogous to our material's receptor unit showed chelation to the 2-picolylamine moiety to be the main binding mode of metal ions to dMOR-2. Overall, dMOR-2 is shown to represent a rare example of a MOF, which combines sensitive fluorescence detection and high sorption capacity for heavy metal ions.
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