Construction of Core-Shell MOFs@COF Hybrids as a Platform for the Removal of UO and Eu Ions from Solution.

ACS Appl Mater Interfaces

School of Life Science, Shaoxing University, Huancheng West Road 508, Shaoxing 312000, P. R. China.

Published: March 2021


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Article Abstract

The binary nanocomposites of metal/covalent-organic frameworks (NH-MIL-125(Ti)@TpPa-1) were constructed by solvothermal method, which was developed as a multifunctional platform with adsorption and photocatalysis for radionuclides removal. The batch experiments and physicochemical property (FT-IR, XRD, SEM, TEM, XPS, etc.) corroborated: (i) core-shell NH-MIL-125(Ti)@TpPa-1 had a more stable, multilayer pore structure and abundant active functional groups; (ii) NH-MIL-125(Ti)@TpPa-1 had fast a removal rate, as well as a high adsorption capacity of 536.73 mg (UO)/g and 593.97 mg (Eu)/g; (iii) the pseudo-second-order and Langmuir model provided a more reasonable description, indicating the immobilization process was endothermic, spontaneous chemisorption; (iv) the adsorption mechanism was chelation and electrostatic attraction, ascribed to the nitrogen/oxygen-containing functional groups. These results illustrated that NH-MIL-125(Ti)@TpPa-1 was a prospective adsorbent for the remediation polluted by radionuclides. In addition, the research provided the theoretical basis for further investigation on the UO(VI) photoreduction.

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http://dx.doi.org/10.1021/acsami.1c03151DOI Listing

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