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Ce in the +4 oxidation state: Anion photoelectron spectroscopy and photodissociation of small Ce x O y H z - molecules.

Authors :
Topolski JE
Kafader JO
Jarrold CC
Source :
The Journal of chemical physics [J Chem Phys] 2017 Sep 14; Vol. 147 (10), pp. 104303.
Publication Year :
2017

Abstract

The anion photoelectron (PE) spectra of a range of small mono-cerium molecular species, along with the Ce <subscript>2</subscript> O <subscript>4</subscript> <superscript>-</superscript> and Ce <subscript>3</subscript> O <subscript>6</subscript> <superscript>-</superscript> stoichiometric clusters, are presented and analyzed with the support of density functional theory calculations. A common attribute of all of the neutral species is that the Ce centers in both the molecules and clusters are in the +4 oxidation state. In bulk ceria (CeO <subscript>2</subscript> ), an unoccupied, narrow 4f band lies between the conventional valence (predominantly O 2p) and conduction (Ce 5d) bands. Within the CeO <subscript>2</subscript> <superscript>-</superscript> , CeO <subscript>3</subscript> H <subscript>2</subscript> <superscript>-</superscript> , and Ce(OH) <subscript>4</subscript> <superscript>-</superscript> series, the PE spectra and computational results suggest that the Ce 6s-based molecular orbital is the singly occupied HOMO in CeO <subscript>2</subscript> <superscript>-</superscript> but becomes destabilized as the Ce 4f-local orbital becomes stabilized with increasing coordination. CeO <subscript>3</subscript> <superscript>-</superscript> , a hyperoxide, undergoes photodissociation with 3.49 eV photon energy to form the stoichiometric neutral CeO <subscript>2</subscript> and O <superscript>-</superscript> . In the CeO <subscript>2</subscript> <superscript>-</superscript> , Ce <subscript>2</subscript> O <subscript>4</subscript> <superscript>-</superscript> ,and Ce <subscript>3</subscript> O <subscript>6</subscript> <superscript>-</superscript> stoichiometric cluster series, the 6s destabilization with 4f stabilization is associated with increasing cluster size, suggesting that a bulk-like band structure may be realized with fairly small cluster sizes. The destabilization of the 6s-based molecular orbitals can be rationalized by their diffuse size relative to Ce-O bond lengths in a crystal structure, suggesting that 6s bands in the bulk may be relegated to the surface.

Details

Language :
English
ISSN :
1089-7690
Volume :
147
Issue :
10
Database :
MEDLINE
Journal :
The Journal of chemical physics
Publication Type :
Academic Journal
Accession number :
28915734
Full Text :
https://doi.org/10.1063/1.4996133