A-site doped SrTiO3 is considered as a promising substitute for traditional anodic metals in solid oxide fuel cells (SOFCs). In this study, we present the reactivity of La0.2Sr0.25Ca0.45TiO3 (LCSTO), La0.2Sr0.7TiO3 (LSTO), and SrTiO3 (STO) toward H2 by operando ambient pressure NEXAFS spectroscopy and theoretical spectra simulation with FDMNES code. The samples were synthesized by MBE (molecular beam epitaxy), hydrothermal, and modified-Pechini routes. We found that the reducibility of the samples depends not only on their stoichiometry but also on the morphology, which is determined by the synthetic method. The results of these experiments give insight into the reducibility of Ti4+ in perovskites as well as the opportunity to further optimize the synthesis of these materials to obtain the best performance for SOFC applications.

La0.2Sr0.25Ca0.45TiO3 Surface Reactivity with H2: A Combined Operando NEXAFS and Computational Study / Bassato, F.; Mauri, S.; Braglia, L.; Petrov, A. Yu.; Dobovičnik, E.; Tavani, F.; Tofoni, A.; Ferrer, P.; Grinter, D.; Held, G.; D'Angelo, P.; Torelli, P.. - In: THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS. - ISSN 1948-7185. - 15:33(2024), pp. 8540-8548. [10.1021/acs.jpclett.4c01900]

La0.2Sr0.25Ca0.45TiO3 Surface Reactivity with H2: A Combined Operando NEXAFS and Computational Study

Tavani, F.;Tofoni, A.;D'Angelo, P.
Penultimo
;
2024

Abstract

A-site doped SrTiO3 is considered as a promising substitute for traditional anodic metals in solid oxide fuel cells (SOFCs). In this study, we present the reactivity of La0.2Sr0.25Ca0.45TiO3 (LCSTO), La0.2Sr0.7TiO3 (LSTO), and SrTiO3 (STO) toward H2 by operando ambient pressure NEXAFS spectroscopy and theoretical spectra simulation with FDMNES code. The samples were synthesized by MBE (molecular beam epitaxy), hydrothermal, and modified-Pechini routes. We found that the reducibility of the samples depends not only on their stoichiometry but also on the morphology, which is determined by the synthetic method. The results of these experiments give insight into the reducibility of Ti4+ in perovskites as well as the opportunity to further optimize the synthesis of these materials to obtain the best performance for SOFC applications.
2024
AP-XAS; fuel cells, Operando
01 Pubblicazione su rivista::01a Articolo in rivista
La0.2Sr0.25Ca0.45TiO3 Surface Reactivity with H2: A Combined Operando NEXAFS and Computational Study / Bassato, F.; Mauri, S.; Braglia, L.; Petrov, A. Yu.; Dobovičnik, E.; Tavani, F.; Tofoni, A.; Ferrer, P.; Grinter, D.; Held, G.; D'Angelo, P.; Torelli, P.. - In: THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS. - ISSN 1948-7185. - 15:33(2024), pp. 8540-8548. [10.1021/acs.jpclett.4c01900]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1728890
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