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Electronic and Geometric Structure of Ce3+ Forming Under Reducing Conditions in Shaped Ceria Nanoparticles Promoted by Platinum

Authors :
Maarten Nachtegaal
Alexander V. Soldatov
Grigory Smolentsev
Paula M. Abdala
Olga V. Safonova
Jakub Szlachetko
Alexander A. Guda
Mikhail A. Soldatov
Cristina Paun
J. A. van Bokhoven
Nikolay Smolentsev
Source :
The Journal of Physical Chemistry C. 118:1974-1982
Publication Year :
2014
Publisher :
American Chemical Society (ACS), 2014.

Abstract

The structure of Ce3+, which is responsible for the low-temperature oxygen storage capacity of ceria, was determined by high-energy-resolution fluorescence detected X-ray absorption spectroscopy at the Ce L3 and L1 edges. Well-defined ceria nanoparticles (rods, truncated octahedra, and cubes) were synthesized hydrothermally and promoted by platinum nanoparticles. The electronic structure of Ce3+ does not depend significantly on the nature of the exposed crystallographic planes of CeO2 particles; it does, however, differ from the electronic structure of known stable compounds containing Ce3+ ions, such as CeAlO3, Ce(NO3)3·6H2O, and Ce2Zr2O7. Theoretical simulation of Ce L1 and L3 X-ray absorption spectra, quantitative analysis of the oxygen storage capacity, and X-ray diffraction data suggest that Ce3+ ions form both at the surface and in the near-surface layer. Surface and bulk Ce3+ ions are characterized by elongated Ce–O distances in the first coordination shell and almost the same Ce–Ce distances in th...

Details

ISSN :
19327455 and 19327447
Volume :
118
Database :
OpenAIRE
Journal :
The Journal of Physical Chemistry C
Accession number :
edsair.doi...........26d2248641e56177a969898b96cb5bef
Full Text :
https://doi.org/10.1021/jp409571b