DOE OSTI · 3675680
Dynamic sparse x-ray nanotomography reveals ionomer hydration mechanism in polymer electrolyte fuel-cell catalyst
Abstract
Tomographic imaging of time-evolving samples is a challenging yet important task for various research fields. At the nanoscale, current approaches face limitations of measurement speed or resolution due to lengthy acquisitions. We developed a dynamic nanotomography technique based on sparse dynamic imaging and 4D tomography modeling. We demonstrated the technique, using ptychographic x-ray computed tomography as its imaging modality, on resolving the in situ hydration process of polymer electrolyte fuel cell (PEFC) catalyst. The technique provides a 40-time increase in temporal resolution compared to conventional approaches, yielding 28 nm half-period spatial and 12 min temporal resolution. The results allow a quantitative characterization of the water intake process inside PEFC catalysts with nanoscale resolution, which is crucial for understanding their electrochemical mechanisms and optimizing their performance. Our technique enables high-speed operando nanotomography studies and paves the way for wider application of dynamic tomography at the nanoscale.
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Gao, Zirui (ORCID:0000000324980122), Appel, Christian (ORCID:0000000260503836), Holler, Mirko (ORCID:0000000181410148), Jeschonek, Katharina, Brunnengräber, Kai (ORCID:0000000203181850), Etzold, Bastian (ORCID:0000000165304978), Kronenberg, Michal, Stampanoni, Marco (ORCID:0000000174866681), Ihli, Johannes (ORCID:0000000295415748), Guizar-Sicairos, Manuel (ORCID:0000000282933634). 2024-10-11. Dynamic sparse x-ray nanotomography reveals ionomer hydration mechanism in polymer electrolyte fuel-cell catalyst. https://doi.org/10.1126/sciadv.adp3346
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