Surface symmetry-breaking and strain effects on orbital occupancy in transition metal perovskite epitaxial films

Multidisciplinary x-ray linear dichroism magnetism European Geothermal Research and Innovation Search Engine oxides General Physics and Astronomy General Chemistry 02 engineering and technology manganites 0210 nano-technology General Biochemistry, Genetics and Molecular Biology
DOI: 10.1038/ncomms2189 Publication Date: 2012-11-13T17:07:16Z
ABSTRACT
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can be achieved, for example, through thin-film heterostructure engineering of ABO(3) oxides, enabling emerging properties at interfaces. Interestingly, epitaxial strain may break the degeneracy of 3d-e(g) and t(2g) orbitals, thus favoring a particular orbital filling with consequences for functional properties. Here we disclose the effects of symmetry breaking at free surfaces of ABO(3) perovskite epitaxial films and show that it can be combined with substrate-induced epitaxial strain to tailor at will the electron occupancy of in-plane and out-of-plane surface electronic orbitals. We use X-ray linear dichroism to monitor the relative contributions of surface, strain and atomic terminations to the occupancy of 3z(2)-r(2) and x(2)-y(2) orbitals in La(2/3)Sr(1/3)MnO(3) films. These findings open the possibility of an active tuning of surface electronic and magnetic properties as well as chemical properties (catalytic reactivity, wettability and so on).
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (30)
CITATIONS (295)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....