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Europium(III) functionalized 3D covalent organic framework for quinones adsorption and sensing investigation

共价键 化学 吸附 嫁接 荧光 氢键 共价有机骨架 组合化学 有机化学 表面改性 光化学 化学工程 分子 聚合物 物理化学 离子 工程类 物理 量子力学
作者
Wenkui Li,Peng Ren,Yiwan Zhou,Juntao Feng,Zhi-Qing Ma
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:388: 121740-121740 被引量:83
标识
DOI:10.1016/j.jhazmat.2019.121740
摘要

Chemical functionalization is essential for tuning the physical-chemical characters and broadening the potential applications of covalent organic frameworks (COFs). Based on the multistep postsynthetic modification strategy, Eu (III)-functionalized 3D COF (Eu-3D-COF) was prepared by grafting of Eu (III) onto the carboxyl-funtionalized 3D-COF (COOH-3D-COF). With micropores dominated microspheres structure, Eu-3D-COF exhibited superior adsorption affinity to multi-rings contained quinones based on the π-π interaction, coordination and hydrogen-bonding interactions, especially to 9,10-phenanthrenequinone (PQ) whose adjacent carbonyl oxygens resulting preferable synergistic chelation interaction with Eu(III) was responsible for the maximum adsorption capacity, which was confirmed by instrumental characterizations. The adsorptivity of Eu-3D-COF was apparently improved in comparison with COOH-3D-COF. More importantly, grafting of Eu(III) turned on the fluorescence of the COF, making Eu-3D-COF also a superior chemosensor for sensing application. Its fluorescent can be selectively quenched by quinones, especially by PQ based on the PQ-Eu and PQ-COF interactions co-dominated energy transfer. Therefore, both as an adsorbent and a chemosensor, the multi-functional COF was explored for quinones adsorption and sensing detection investigation in detail. Eu-3D-COF has promising application potentials for hazardous quinones adsorption and sensing detection, which also opens new perspectives for inorganic-organic 3D-COF construction and multi-functional applications.
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