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Fluorescent porous organic polymers for detection and adsorption of nitroaromatic compounds.


ABSTRACT: A fluorescent porous organic polymer (FPOP) with strong fluorescence and tunable emission colors, was synthesized through a simple cost-effective method via Scholl coupling reaction. Experiments proved the stability and excellent detection and adsorption ability, and microporous nature of the material. Luminescence of FPOP was quenched when addition of nitroaromatic compounds. The properties along with large-scale and low-cost preparation make these FPOP potential candidates for fluorescence detection of nitroaromatic compounds. Additionally, FPOP shows higher adsorption capacity and rate than other reported adsorbents, and has the possibility of being an effective adsorbent for industrial usage. Moreover, a fluorescent test paper was further developed and is found to be sensitive to 10-8 M level, complete with a rapid response time and visual detection. This newly developed strategy may open up an avenue for exploring porous polymers, particularly those with a strong fluorescence, for the large-scale fabrication of FPOP for various advanced applications.

SUBMITTER: Xiong JB 

PROVIDER: S-EPMC9508238 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Fluorescent porous organic polymers for detection and adsorption of nitroaromatic compounds.

Xiong Jia-Bin JB   Ban Ding-Ding DD   Zhou Yong-Juan YJ   Du Hui-Jun HJ   Zhao Ai-Wei AW   Xie Lan-Ge LG   Liu Guo-Qun GQ   Chen Si-Ru SR   Mi Li-Wei LW  

Scientific reports 20220923 1


A fluorescent porous organic polymer (FPOP) with strong fluorescence and tunable emission colors, was synthesized through a simple cost-effective method via Scholl coupling reaction. Experiments proved the stability and excellent detection and adsorption ability, and microporous nature of the material. Luminescence of FPOP was quenched when addition of nitroaromatic compounds. The properties along with large-scale and low-cost preparation make these FPOP potential candidates for fluorescence det  ...[more]

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