The work presented in this thesis is focused on the application of an innovative spectroscopic technique, operando Near Edge X-ray Fine Structure (NEXAFS), to investigate the surface reactivity of Solid Oxide Fuel Cells (SOFCs) electrodes and electrolytes. As this technique requires the use of synchrotron radiation, all the measurements reported in this thesis have been performed by using reaction cells available at the beamlines APE-HE (Elettra Synchrotron Facility, Italy) and BO7-B (Diamond Light Source, UK). In detail, this work was focused on studying the surface interaction with H2 of A-site doped SrTiO3 and BaZr0.6Ce0.2Y0.2O3-, this latter being a proton conductor for intermediate temperature fuel cells. In this regard, operando NEXAFS can give fundamental information on the oxidation state of Ti and Ce in these compounds, therefore helping to correlate their working performance with their chemical structure and reactivity. In this thesis, operando NEXAFS was coupled with other characterization techniques such as XPS, XRD, SEM and DFT simulations to gain a complete overview of the chemical and morphological features of the samples.

Study of Materials for SOFC Applications by AP-NEXAFS / Bassato, Ferdinando. - (2025 Apr 04).

Study of Materials for SOFC Applications by AP-NEXAFS

BASSATO, FERDINANDO
2025-04-04

Abstract

The work presented in this thesis is focused on the application of an innovative spectroscopic technique, operando Near Edge X-ray Fine Structure (NEXAFS), to investigate the surface reactivity of Solid Oxide Fuel Cells (SOFCs) electrodes and electrolytes. As this technique requires the use of synchrotron radiation, all the measurements reported in this thesis have been performed by using reaction cells available at the beamlines APE-HE (Elettra Synchrotron Facility, Italy) and BO7-B (Diamond Light Source, UK). In detail, this work was focused on studying the surface interaction with H2 of A-site doped SrTiO3 and BaZr0.6Ce0.2Y0.2O3-, this latter being a proton conductor for intermediate temperature fuel cells. In this regard, operando NEXAFS can give fundamental information on the oxidation state of Ti and Ce in these compounds, therefore helping to correlate their working performance with their chemical structure and reactivity. In this thesis, operando NEXAFS was coupled with other characterization techniques such as XPS, XRD, SEM and DFT simulations to gain a complete overview of the chemical and morphological features of the samples.
4-apr-2025
37
2023/2024
Settore FIS/03 - Fisica della Materia
Università degli Studi di Trieste
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11368/3108002
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