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Three Mechanisms in One Material: Uranium Capture by a Polyoxometalate-Organic Framework through Combined Complexation, Chemical Reduction, and Photocatalytic Reduction. | LitMetric

Three Mechanisms in One Material: Uranium Capture by a Polyoxometalate-Organic Framework through Combined Complexation, Chemical Reduction, and Photocatalytic Reduction.

Angew Chem Int Ed Engl

State Key Laboratory of Radiation Medicine and Protection, School for Radiological and interdisciplinary Sciences (RAD-X) and Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Soochow University, Suzhou, 215123, China.

Published: November 2019

AI Article Synopsis

  • The development of effective uranium sorbent materials is difficult, particularly in achieving high efficiency, capacity, and stability against hydrolysis and radiation.
  • A new polyoxometalate-organic framework material, SCU-19, was created using a solvothermal method and tested for its ability to capture uranium.
  • SCU-19 utilizes three mechanisms for uranium removal, including ligand complexation and photocatalytic reduction under light, which allows for faster absorption rates and increased efficiency in uranium separation.

Article Abstract

The design and synthesis of uranium sorbent materials with high uptake efficiency, capacity and selectivity, as well as excellent hydrolytic stability and radiation resistance remains a challenge. Herein, a polyoxometalate (POM)-organic framework material (SCU-19) with a rare inclined polycatenation structure was designed, synthesized through a solvothermal method, and tested for uranium separation. Under dark conditions, SCU-19 can efficiently capture uranium through ligand complexation using its exposed oxo atoms and partial chemical reduction from U to U by the low-valent Mo atoms in the POM. An additional U photocatalytic reduction mechanism can occur under visible light irradiation, leading to a higher uranium removal without saturation and faster sorption kinetics. SCU-19 is the only uranium sorbent material with three distinct sorption mechanisms, as further demonstrated by X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge structure (XANES) analysis.

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Source
http://dx.doi.org/10.1002/anie.201909718DOI Listing

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