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A nitrogen-rich covalent organic framework for simultaneous dynamic capture of iodine and methyl iodide

Authors :
Zhifang Chai
Mengjia Yuan
Mingxing Zhang
Long Chen
Tingting Pan
Peng Lin
Yu Han
Yugang Zhang
Shuao Wang
Lei Chen
Kunfeng Li
Fuyin Ma
Xinglong Dong
Junchang Chen
Cailing Chen
Linwei He
Shitong Zhang
Xing Dai
Ruhong Zhou
Xiajie Liu
Source :
Chem. 7:699-714
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

Summary The capture of radioiodine species during nuclear fuel reprocessing and nuclear accidents is crucial for nuclear safety, environmental protection, and public health. Previously reported emerging materials for iodine uptake cannot outperform commercial zeolites and active carbon under the practical dynamic scenario. Herein, we present a new design philosophy aiming at significantly enhanced specific host-guest interactions and obtain a nitrogen-rich covalent organic framework material by introducing a bipyridine group into the building block for the simultaneous capture of both iodine gas through enhanced electron-pair effect and organic iodide via the methylation reaction. These efforts give rise to not only an ultrahigh uptake capacity of 6.0 g g−1 for iodine gas and a record-high value of 1.45 g g−1 for methyl iodide under static sorption conditions but also, more importantly, a record-high iodine loading capability under dynamic conditions demonstrated from the breakthrough experiments.

Details

ISSN :
24519294
Volume :
7
Database :
OpenAIRE
Journal :
Chem
Accession number :
edsair.doi...........05366e6e295c91696f1ca6993a6a80e8