JavaScript is disabled for your browser. Some features of this site may not work without it.

    Listar

    Todo RIUMAComunidades & ColeccionesPor fecha de publicaciónAutoresTítulosMateriasTipo de publicaciónCentrosDepartamentos/InstitutosEditoresEsta colecciónPor fecha de publicaciónAutoresTítulosMateriasTipo de publicaciónCentrosDepartamentos/InstitutosEditores

    Mi cuenta

    AccederRegistro

    Estadísticas

    Ver Estadísticas de uso

    DE INTERÉS

    Datos de investigaciónReglamento de ciencia abierta de la UMAPolítica de RIUMAPolitica de datos de investigación en RIUMAOpen Policy Finder (antes Sherpa-Romeo)Dulcinea
    Preguntas frecuentesManual de usoContacto/Sugerencias
    Ver ítem 
    •   RIUMA Principal
    • Investigación
    • Artículos
    • Ver ítem
    •   RIUMA Principal
    • Investigación
    • Artículos
    • Ver ítem

    Operando Reactor-Cell with Simultaneous Transmission FTIR and Raman Characterization (IRRaman) for the Study of Gas-Phase Reactions with Solid Catalysts.

    • Autor
      Ternero-Hidalgo, Juan José; Guerrero-Pérez, María OlgaAutoridad Universidad de Málaga; Rodríguez-Mirasol, JoséAutoridad Universidad de Málaga; Cordero-Alcántara, TomásAutoridad Universidad de Málaga; Bañares, Miguel Ángel; Portela, Raquel; Bazin, Philippe; Cleo, Guillaume; Daturi, Marco
    • Fecha
      2020-03-10
    • Editorial/Editor
      American Chemical Society
    • Palabras clave
      Espectroscopía Raman; Catalizadores
    • Resumen
      Raman and transmission FTIR spectroscopic techniques have been coupled in a new homemade reactor-cell designed in a joint CSIC–LCS collaboration. The setup is easily adapted to any FTIR and fiber-coupled Raman spectrometers and gas analysis techniques. It allows for simultaneous operando FTIR and Raman spectroscopic measurement, which provide complementary characterization of adsorbed species, reaction intermediates, and structural properties of the catalyst. This system was validated with the study of vanadium-based catalysts during propane oxydehydrogenation (ODH). The combined use of both spectroscopies with gas analysis techniques to measure the activity contributes to the understanding of propane ODH and the identification of the role of different oxygen species bound to vanadium sites. For example, the simultaneous characterization of the catalyst under the same conditions by IR and Raman confirms that the V═O mode has the same frequency in both spectroscopies and that bridging oxygen sites (V—O—V, V—O—Zr) present higher activity than terminal V═O bonds. These results demonstrate the high potential of the new simultaneous transmission IR–Raman operando rig to correlate the activity and the structure of catalysts, thus assisting the rational design of catalytic processes.
    • URI
      https://hdl.handle.net/10630/30473
    • DOI
      https://dx.doi.org/10.1021/acs.analchem.9b05473
    • Compartir
      RefworksMendeley
    Mostrar el registro completo del ítem
    Ficheros
    IRRaman methodology paper final.pdf (617.3Kb)
    Colecciones
    • Artículos

    Estadísticas

    REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
    REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
     

     

    REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA
    REPOSITORIO INSTITUCIONAL UNIVERSIDAD DE MÁLAGA