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Title: | Functionalized Ionic Porous Organic Polymers Exhibiting High Iodine Uptake from Both the Vapor and Aqueous Medium |
Authors: | SEN, ARUNABHA SHARMA, SHIVANI DUTTA, SUBHAJIT Shirolkar, Mandar M. DAM, GOURAB K. LET, SUMANTA GHOSH, SUJIT K. Dept. of Chemistry |
Keywords: | Ionic porous organic polymers (iPOPs) Radioactive iodine Capture Cationic network Distribution coefficlent Real-world samples DFT studies 2021-AUG-WEEK2 TOC-AUG-2021 2021 |
Issue Date: | Jul-2021 |
Publisher: | American Chemical Society |
Citation: | ACS Applied Materials & Interfaces, 13(29), 34188–34196. |
Abstract: | Large-scale generation of radioactive iodine (129I, 131I) in nuclear power plants pose a critical threat in the event of fallout, thus rendering the development of iodine sequestering materials (from both the vapor and aqueous medium) highly pivotal. Herein, we report two chemically stable ionic polymers containing multiple binding sites, including phenyl rings, imidazolium cations, and bromide anions, which in synergy promote adsorption of iodine/triiodide anions. In brief, exceptional iodine uptake (from the vapor phase) was observed at nuclear fuel reprocessing conditions. Furthermore, the ionic nature propelled removal of >99% of I3– from water within 30 min. Additionally, benchmark uptake capacities, as well as unprecedented selectivity, were observed for I3–anions. The excellent affinity (distribution coefficient, ∼105 mL/g) enabled iodine capture from seawater-spiked samples. Moreover, iodine-loaded compounds showed conductivity (10–4 S/cm, 10–6 S/cm), placing them among the best known conducting porous organic polymers. Lastly, DFT studies unveiled key insights in coherence with the experimental findings. |
URI: | http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6156 https://doi.org/10.1021/acsami.1c07178 |
ISSN: | 1944-8244 1944-8252 |
Appears in Collections: | JOURNAL ARTICLES |
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