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Beilstein J. Nanotechnol. 2025, 16, 860–871, doi:10.3762/bjnano.16.65
Figure 1: Valence band photoemission spectra of 1.3 MLE cerium oxide/Rh(111) as laid (a, b) and after anneali...
Figure 2: High-resolution synchrotron radiation C 1s XPS spectra on CeO2(111) (a) and CeO2−x (111) (b) for di...
Figure 3: μ-XPS valence band spectra of a Ce0.4Zr0.6O2−x film acquired using a photon at the Ce3+-related Ce ...
Figure 4: (a) Ce–O interatomic distances for 2 ML and 10 ML CeO2 films evaluated by fitting Ce L3-edge EXAFS ...
Figure 5: Ce L3-edge HERFD-XANES spectra of (a) 2 ML and b) 10 ML CeO2 films acquired during the thermal cycl...
Figure 6: Ce M5-edge XANES spectra of (a) an undoped CeO2 film, (b) a Cu:CeO2 5 atom % doped film and (c) a C...
Figure 7: Left: Ce N4,5 XAS absorption spectra measured in transmission mode for the CeO2 film with embedded ...
Beilstein J. Nanotechnol. 2015, 6, 60–67, doi:10.3762/bjnano.6.7
Figure 1: Sketch of the experimental set up: the NPs are created by the NC200 source (A), they are mass selec...
Figure 2: SEM images of NPs films: NPs diameter 6 nm (a), NPs diameter 9 nm (lateral size distribution in the...
Figure 3: STEM (a) and HRTEM (b) images of ceria NPs corresponding to the sample with average diameter of 9 n...
Figure 4: (a) Ce 3d XPS spectra and corresponding fit of the 9 nm sample acquired at 40 W, in the bottom regi...
Figure 5: (a) Ce 3d XPS spectra for a complete reduction (black curves) and oxidation (red curve) cycle. (b) ...
Figure 6: STM images of a cerium oxide ultrathin film on Pt(111) (a) as grown, acquired at 2.0 V and 0.03 nA,...