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Visualizing the Flexibility of RHO Nanozeolite: Experiment and Modeling.
Clatworthy, Edwin B; Moldovan, Simona; Nakouri, Kalthoum; Gramatikov, Stoyan P; Dalena, Francesco; Daturi, Marco; Petkov, Petko St; Vayssilov, Georgi N; Mintova, Svetlana.
Afiliación
  • Clatworthy EB; ENSICAEN, UNICAEN, CNRS, Laboratoire Catalyse et Spectrochimie (LCS), Normandie Université, 14050 Caen, France.
  • Moldovan S; CNRS, INSA Rouen Normandie, Groupe de Physique des Matériaux UMR 6634, Université Rouen Normandie, F-76000 Rouen, France.
  • Nakouri K; CNRS, INSA Rouen Normandie, Groupe de Physique des Matériaux UMR 6634, Université Rouen Normandie, F-76000 Rouen, France.
  • Gramatikov SP; Faculty of Chemistry and Pharmacy, University of Sofia, 1126 Sofia, Bulgaria.
  • Dalena F; ENSICAEN, UNICAEN, CNRS, Laboratoire Catalyse et Spectrochimie (LCS), Normandie Université, 14050 Caen, France.
  • Daturi M; ENSICAEN, UNICAEN, CNRS, Laboratoire Catalyse et Spectrochimie (LCS), Normandie Université, 14050 Caen, France.
  • Petkov PS; Faculty of Chemistry and Pharmacy, University of Sofia, 1126 Sofia, Bulgaria.
  • Vayssilov GN; Faculty of Chemistry and Pharmacy, University of Sofia, 1126 Sofia, Bulgaria.
  • Mintova S; ENSICAEN, UNICAEN, CNRS, Laboratoire Catalyse et Spectrochimie (LCS), Normandie Université, 14050 Caen, France.
J Am Chem Soc ; 145(28): 15313-15323, 2023 Jul 19.
Article en En | MEDLINE | ID: mdl-37394746
ABSTRACT
Structural flexibility is an intrinsic feature of zeolites, and the characterization of such dynamic behavior is key to maximizing their performance and realizing their potential in both existing and emerging applications. Here, the flexibility of a high-aluminum nano-sized RHO zeolite is directly visualized with in situ TEM for the first time. Variable temperature experiments directly observe the physical expansion of the discrete nanocrystals in response to changes in both guest-molecule chemistry (Ar vs CO2) and temperature. The observations are complemented by operando FTIR spectroscopy verifying the nature of the adsorbed CO2 within the pore network, the desorption kinetics of carbonate species, and changes to the structural bands at high temperatures. Quantum chemical modeling of the RHO zeolite structure substantiates the effect of cation (Na+ and Cs+) mobility in the absence and presence of CO2 on the flexibility behavior of the structure. The results demonstrate the combined influences of temperature and CO2 on the structural flexibility consistent with the experimental microscopy observations.

Texto completo: 1 Bases de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: J Am Chem Soc Año: 2023 Tipo del documento: Article País de afiliación: Francia

Texto completo: 1 Bases de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: J Am Chem Soc Año: 2023 Tipo del documento: Article País de afiliación: Francia