研究目的
To elucidate the electronic structure of BaTi1?x(Mn1/2Nb1/2)xO3 and the modifications induced by Mn doping, and to rationalize how this compound retains its ferroelectricity despite a significant reduction of the optical gap upon Mn doping.
研究成果
The study provides spectroscopic evidence of the ferroelectricity and reduced bandgap functionality in Mn-Nb co-doped BaTiO3. The retention of ferroelectricity is attributed to the persistence of Ti off-centering, while the bandgap reduction is due to newly created Mn d bands that hybridize with O 2p states.
研究不足
The study is limited by the resolution of the spectroscopic techniques used and the approximations inherent in DFT calculations. The effects of higher doping concentrations and other dopants were not explored.
1:Experimental Design and Method Selection:
The study used a combination of x-ray spectroscopies (HERFD-XAS at Ti K, Mn K, and O K edges) and DFT calculations to investigate the electronic structure and local atomic coordination.
2:Sample Selection and Data Sources:
Bulk polycrystalline pellets and epitaxial thin films of BaTiO3 and Mn-Nb co-doped BaTiO3 were prepared.
3:List of Experimental Equipment and Materials:
High energy resolution fluorescence detected x-ray absorption (HERFD-XAS) experiments were performed at the ID26 beamline at ESRF, and resonant photoelectron spectroscopy (RPES) was carried out at the I09 beamline at the Diamond Light Source.
4:Experimental Procedures and Operational Workflow:
The samples were subjected to x-ray absorption and photoelectron spectroscopy to study their electronic structure and local symmetry.
5:Data Analysis Methods:
The data were analyzed to understand the changes in electronic structure and local symmetry induced by Mn doping.
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