Local and electronic structure of Sr1-xGdxTiO3 probed by X-ray absorption spectroscopy
Alexandre Mesquita, Elio Thizay Magnavita Oliveira, Hugo Bonette de, Carvalho

TL;DR
This study uses X-ray absorption spectroscopy to analyze the local and electronic structures of Gd-doped SrTiO3, revealing disorder, local symmetry, and electronic changes induced by Gd doping.
Contribution
It provides detailed insights into the local atomic and electronic structure of Sr1-xGdxTiO3 using advanced X-ray absorption techniques, highlighting effects of Gd doping.
Findings
Crystallographic model aligns with local Sr structure.
Gd atoms are centered in GdO12 dodecahedra.
Gd doping causes electronic and structural disorder.
Abstract
Gadolinium-doped strontium titanate is a typical perovskite structure material which has been studied due their thermomechanical, termoelectrical and electrochemical properties. In this study, local and electronic structure of Sr1-xGdxTiO3 samples were analyzed through X-ray absorption spectroscopy measurements. The results obtained with the adjustment of extended X-ray absorption fine structure (EXAFS) spectra at Sr K-edge show that crystallographic model of Pm-3m space group is consistent with local structure around Sr atoms, as expected. This same analysis also reveals an increasing of the Debye-Waller as a function of the Gd content in some shells, which is associated with disorder induced by Sr vacancies due to the heterovalent Gd incorporation. EXAFS spectra at Gd LIII-edge for Sr1-xGdxTiO3 samples indicates regular GdO12 dodecahedra without displacement of Gd atoms from…
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Taxonomy
TopicsFerroelectric and Piezoelectric Materials · Electronic and Structural Properties of Oxides · Magnetic and transport properties of perovskites and related materials
