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Recognition of trace organic pollutant and toxic metal ions via a tailored fluorescent metal-organic coordination polymer in water environment.


ABSTRACT: A novel fluorescence material H2Sr2(bqdc)3(phen)2 (1) for trace recognition of organic pollutant and toxic metal ions is designed and prepared by two weak fluorescent ligands and Sr2+. The latter was selected although it played no role in the modulation process of luminescence and despite low-cost, alkaline earth, metal-organic coordination polymers lacking competitive functionality. The strong fluorescence of the fluorescence material was based on the propeller configuration of the metal-organic coordination polymer, which was characterized by X-ray single crystal diffraction showing that the N active sites inside the crystal channels can interact with external guests. Convenient fluorescence detection of 3-AT can be realized using an ultraviolet lamp and test strip and the determination of Cd2+ showed good reusability with a detection limit of 1 × 10-9 mol L-1, which is lower than the standard stipulated by the Environmental Protection Agency. Detailed experiments results revealed that the material was a promising candidate for specifically recognizing amitrole and Cd2+ because of its selective fluorescence quenching and sensitive detection in water.

SUBMITTER: He D 

PROVIDER: S-EPMC9087362 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Recognition of trace organic pollutant and toxic metal ions <i>via</i> a tailored fluorescent metal-organic coordination polymer in water environment.

He Danfeng D   Liu Shumei S   Zhou Fujiang F   Zhao Xianjun X   Liu Yiwei Y   Luo Fang F   Liu Shuxia S  

RSC advances 20181009 60


A novel fluorescence material H<sub>2</sub>Sr<sub>2</sub>(bqdc)<sub>3</sub>(phen)<sub>2</sub> (1) for trace recognition of organic pollutant and toxic metal ions is designed and prepared by two weak fluorescent ligands and Sr<sup>2+</sup>. The latter was selected although it played no role in the modulation process of luminescence and despite low-cost, alkaline earth, metal-organic coordination polymers lacking competitive functionality. The strong fluorescence of the fluorescence material was b  ...[more]

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