Ce3+ presence and formation in Ce-based UiO-66 Metal-Organic Framework (MOF) still presents a debated evaluation between the employed characterization techniques. In this work, we have prepared a defective UiO-66(Ce) and investigated the nature of Ce3+ sites on the CeOx clusters. Laboratory tech-niques (EPR, XPS, UV-Vis and FTIR spectroscopy) were compared with operando Ce M5-edge NEXAFS to study Ce3+ accessibility. All the employed techniques presented different degrees of accessibility or reliability (e.g., sample damage or not sufficient sensitivity). Among the obtained results, EPR, UV-Vis and NEXAFS spectroscopies unraveled Ce4+/Ce3+ conversion during the sample dehydration. The MOF structure was not damaged by neither water loss nor the beam, directly relating Ce oxidation state to the water content, opening a new route to both synthesis of stable and active MOFs and non-invasive characterization strategies. Finally, laboratory measurements considerations were exploited for studying Ce3+ formation in Zr-doped UiO-66(Ce) samples. (c) 2022 Elsevier Ltd. All rights reserved.

Unraveling the reversible formation of defective Ce3+sites in the UiO-66(Ce) material: a multi-technique study

Salusso, D;Bonino, F;Paganini, MC;Bordiga, S
Last
2023-01-01

Abstract

Ce3+ presence and formation in Ce-based UiO-66 Metal-Organic Framework (MOF) still presents a debated evaluation between the employed characterization techniques. In this work, we have prepared a defective UiO-66(Ce) and investigated the nature of Ce3+ sites on the CeOx clusters. Laboratory tech-niques (EPR, XPS, UV-Vis and FTIR spectroscopy) were compared with operando Ce M5-edge NEXAFS to study Ce3+ accessibility. All the employed techniques presented different degrees of accessibility or reliability (e.g., sample damage or not sufficient sensitivity). Among the obtained results, EPR, UV-Vis and NEXAFS spectroscopies unraveled Ce4+/Ce3+ conversion during the sample dehydration. The MOF structure was not damaged by neither water loss nor the beam, directly relating Ce oxidation state to the water content, opening a new route to both synthesis of stable and active MOFs and non-invasive characterization strategies. Finally, laboratory measurements considerations were exploited for studying Ce3+ formation in Zr-doped UiO-66(Ce) samples. (c) 2022 Elsevier Ltd. All rights reserved.
2023
27
101337
1
7
https://www.sciencedirect.com/science/article/pii/S2468519422005663
Metal -organic framework; Ce-MOF; Ce reduction; Laboratory techniques; NEXAFS
Rojas-Buzo, S; Salusso, D; Bonino, F; Paganini, MC; Bordiga, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1947337
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