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Título
Tuning CO2 Capture and Conversion with Metal–Organic Frameworks Crystallized in Aqueous Graphene Oxide Suspensions
Autor(es)
Palabras clave
Metal–organic frameworks
Graphene oxide
Carbon dioxide
Adsorption
Catalysis
Fecha de publicación
2025
Editor
ACS Publications
Citación
Francisco G. Cirujano, Nuria Martín, Elena López-Maya, Mayra G Álvarez, M. Jesús Sánchez-Montero, Eduardo García-Verdugo, M. Dolores Merchán, and M. Mercedes Velázquez ACS Applied Materials & Interfaces 2025 17 (10), 15357-15371 DOI: 10.1021/acsami.4c19708
Resumen
[EN]We present a green procedure for the synthesis of metal−organic frameworks
(MOFs) (having Zn, Ni, or Co) in graphene oxide aqueous suspensions (obtained with
graphitized or nongraphitized carbon nanofibers) avoiding organic solvents and high
temperatures. The materials were thoroughly characterized using X-ray diffraction (XRD),
scanning electron microscopy (SEM), thermogravimetric analysis (TGA), N2/CO2-
physisorption, Raman and X-ray photoelectron (XPS) spectroscopies. The results
demonstrate that the nature of the metal (electronegativity) and graphene oxide (defects
of oxygen-containing groups) are key in the size, porosity, and defectivity (free
noncoordinated linkers and open metal sites) of the MOF and significantly affect their
CO2 adsorption energy (up to 6 kJ·mol−1 increase), uptake (up to 5·mmolCO2·g−1 increase),
and catalytic activity (up to 35% rate increase) with respect to bulk MOFs in the solvent-free,
ambient pressure CO2 cycloaddition to epoxides.
URI
DOI
https://doi.org/10.1021/acsami.4c19708
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