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Low-temperature growth of reactive pyrochlore nanostructures on Zirconia-supported ceria

  • The use of a catalyst support for the design of nanoscale heterogeneous catalysts based on cerium oxide offers vast possibilities for future catalyst development, particularly with regard to an increased focus on the use of renewable biogas and an emerging hydrogen economy. In this study, zirconia-supported ceria catalysts were synthesized, activated by using different thermochemical treatments, and characterized by way of temperature-programmed reduction (TPR), oxygen storage capacity, Xray diffraction, electron microscopy, and luminescence spectroscopy using Eu3+ as a spectroscopic probe. Through reduction-oxidation pretreatment routines, reactive pyrochlore structures were created at temperatures as low as 600 degrees C and identified through TPR and electron microscopy experiments. A structural relationship and alignment of the crystal planes is revealed in high-resolution scanning transmission electron microscopy experiments through the digital diffraction patterns. Low-temperature pretreatment induces the formation of reactiveThe use of a catalyst support for the design of nanoscale heterogeneous catalysts based on cerium oxide offers vast possibilities for future catalyst development, particularly with regard to an increased focus on the use of renewable biogas and an emerging hydrogen economy. In this study, zirconia-supported ceria catalysts were synthesized, activated by using different thermochemical treatments, and characterized by way of temperature-programmed reduction (TPR), oxygen storage capacity, Xray diffraction, electron microscopy, and luminescence spectroscopy using Eu3+ as a spectroscopic probe. Through reduction-oxidation pretreatment routines, reactive pyrochlore structures were created at temperatures as low as 600 degrees C and identified through TPR and electron microscopy experiments. A structural relationship and alignment of the crystal planes is revealed in high-resolution scanning transmission electron microscopy experiments through the digital diffraction patterns. Low-temperature pretreatment induces the formation of reactive pyrochlore domains under retention of the surface area of the catalyst system, and no further morphological changes are detected. Furthermore, the formation of pyrochlore domains achieved through severe reduction and mild reoxidation (SRMO) treatments is reversible. Over multiple alternating SRMO and severe reduction and severe reoxidation (SRSO) treatments, europium spectroscopy and TPR results indicate that pyrochlore structures are recreated over consecutive treatments, whenever the mild oxidation step at 500 degrees C is the last treatment (SRMO, SRMO-SRSO-SRMO, etc.).zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Maria Pilar YesteORCiD, Juan Carlos Hernandez-GarridoORCiD, Michael Uwe KumkeORCiDGND, Sarah Alvarado, Miguel Angel CauquiORCiD, Jose Juan CalvinoORCiD, Philipp-Alexander PrimusORCiDGND
DOI:https://doi.org/10.1021/acsanm.2c00416
ISSN:2574-0970
Titel des übergeordneten Werks (Englisch):ACS applied nano materials
Untertitel (Englisch):implications for improved catalytic behavior
Verlag:American Chemical Society
Verlagsort:Washington
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Erstveröffentlichung:05.05.2022
Erscheinungsjahr:2022
Datum der Freischaltung:03.04.2023
Freies Schlagwort / Tag:ceria; nanocomposite; oxygen; pyrochlore; storage capacity; supported catalyst; zirconia
Band:5
Ausgabe:5
Seitenanzahl:11
Erste Seite:6316
Letzte Seite:6326
Fördernde Institution:FEDER/MINECO [MAT2017-87579-R]; MCIN/AEI [PID2020113006RB-I00]; Federal; Ministry for Economic Affairs and Energy through the AiF (German; Federation of Industrial Research Associations) [19976 BG]
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 54 Chemie / 540 Chemie und zugeordnete Wissenschaften
Peer Review:Referiert
Publikationsweg:DOAJ gelistet
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