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3D 离子型烯烃连接共轭微孔聚合物用于从废水中选择性检测和去除 TcO/ReO。

3D Ionic Olefin-Linked Conjugated Microporous Polymers for Selective Detection and Removal of TcO/ReO from Wastewater.

机构信息

College of Chemistry, Nanchang University, Nanchang 330031, China.

State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, China.

出版信息

Anal Chem. 2022 Aug 2;94(30):10850-10856. doi: 10.1021/acs.analchem.2c01932. Epub 2022 Jul 20.

Abstract

Technetium (Tc) is a highly toxic radioactive nuclear wastewater contaminant. Real-time detection of Tc is very difficult due to its difficult-to-complex nature. Herein, a novel three-dimensional ionic olefin-linked conjugated microporous polymer (TFPM-EP-Br) is constructed using tetrakis(4-aldehyde phenyl)methane (TFPM) as the central monomer. The unique cationic cavity and highly hydrophobic framework enable TFPM-EP-Br to act as a fluorescent sensor for TcO. The fluorophores of TFPM-EP-Br can be quenched due to electron transfer from TFPM-EP-Br to TcO and the formation of strongly nonfluorescent complexes. Meanwhile, the regular pore channels are beneficial for the fast mass transfer of TcO, resulting in an ultrafast response time (less than 2 s) with an ultralow detection limit (33.3 nM). In addition, the ultrahigh specific surface area enables TFPM-EP-Br to combine the ability to synergistically detect and remove radioactive Tc. From this perspective, the novel conjugated microporous polymer has made a breakthrough in the detection and extraction of radioactive contaminants.

摘要

锝(Tc)是一种剧毒的放射性核废水污染物。由于其难以合成的性质,实时检测 Tc 非常困难。在此,使用四(4-醛基苯基)甲烷(TFPM)作为中心单体构建了一种新型的三维离子型烯烃连接的共轭微孔聚合物(TFPM-EP-Br)。独特的正离子腔和高度疏水的骨架使 TFPM-EP-Br 能够作为 TcO 的荧光传感器。由于电子从 TFPM-EP-Br 转移到 TcO 并形成强非荧光络合物,TFPM-EP-Br 的荧光团可以被猝灭。同时,规则的孔道有利于 TcO 的快速传质,从而实现了超快速的响应时间(小于 2 秒)和超低的检测限(33.3 nM)。此外,超高的比表面积使 TFPM-EP-Br 具有协同检测和去除放射性 Tc 的能力。从这个角度来看,新型共轭微孔聚合物在放射性污染物的检测和提取方面取得了突破。

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