Quantitative, Spectro-kinetic Analysis of Oxygen in Electron-Beam Sensitive, Multimetallic Oxide Nanostructures

The oxygen stoichiometry of hollandite, KxMnO2-δ, nanorods has been accurately determined from a quantitative analysis of scanning-transmission electron microscopy (STEM) X-Ray Energy Dispersive Spectroscopy (XEDS) experiments carried out in chrono-spectroscopy mode. A methodology combining 3D reconstructions of high-angle annular dark field electron tomography experiments, using compressed-sensing algorithms, and quantification through the so-called ζ-factors method of XEDS spectra recorded on a high-sensitivity detector has been devised to determine the time evolution of the oxygen content o... Mehr ...

Verfasser: López Haro, Miguel
Gómez-Recio, Isabel
Pan, Huiyan
Delgado Jaén, Juan José
Chen, Xiaowei
Cauqui López, Miguel Ángel
Pérez Omil, José Antonio
Ruiz-González, María Luisa
Hernando, María
Parras, Marina
González-Calbet, José M.
Calvino Gámez, José Juan
Dokumenttyp: journal article
Erscheinungsdatum: 2024
Verlag/Hrsg.: Oxford University Press
Schlagwörter: chrono-spectroscopy-electron tomographycombination / electron-beam sensitive materials / oxygen stoichiometry / potassium-manganese hollandites / quantitative XEDS at nanoscale
Sprache: Englisch
Permalink: https://search.fid-benelux.de/Record/base-29085717
Datenquelle: BASE; Originalkatalog
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Link(s) : http://hdl.handle.net/10498/32577