Highly Sensitive Adsorption and Detection of Iodide in Aqueous Solution by a Post-Synthesized Zirconium-Organic Framework

Author:

Zhang Jun,Yang Shanli,Shao Lang,Ren Yiming,Jiang Jiaolai,Wang Huaisheng,Tang Hao,Deng Hui,Xia TifengORCID

Abstract

Effective methods of detection and removal of iodide ions (I−) from radioactive wastewater are urgently needed and developing them remains a great challenge. In this work, an Ag+ decorated stable nano-MOF UiO-66-(COOH)2 was developed for the I− to simultaneously capture and sense in aqueous solution. Due to the uncoordinated carboxylate groups on the UiO-66-(COOH)2 framework, Ag+ was successfully incorporated into the MOF and enhanced the intrinsic fluorescence of MOF. After adding iodide ions, Ag+ would be produced, following the formation of AgI. As a result, Ag+@UiO-66-(COOH)2 can be utilized for the removal of I− in aqueous solution, even in the presence of other common ionic ions (NO2−, NO3−, F−, SO42−). The removal capacity as high as 235.5 mg/g was calculated by Langmuir model; moreover, the fluorescence of Ag+@UiO-66-(COOH)2 gradually decreases with the deposition of AgI, which can be quantitatively depicted by a linear equation. The limit of detection toward I− is calculated to be 0.58 ppm.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference51 articles.

1. International Atomic Energy Agency (2015). Energy, Electricity and Nuclear Power Estimates for the Period Up to 2050, International Atomic Energy Agency.

2. Structural isomerism of an anionic nanoporous In-MOF with interpenetrated diamond-like topology;Gu;CrystEngComm,2012

3. Iodine capture in porous organic polymers and metal–organic frameworks materials;Xie;Mater. Horiz.,2019

4. Chalcogenide Aerogels as Sorbents for Radioactive Iodine;Subrahmanyam;Chem. Mater.,2015

5. Development of bismuth-functionalized graphene oxide to remove radioactive iodine;Han;Dalton Trans.,2019

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