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Oxygen-Driven Metal-Insulator Transition in SrNbO3 Thin Films Probed by Infrared Spectroscopy

Academic Article
Publication Date:
2022
abstract:
The occurrence of oxygen-driven metal-insulator-transition (MIT) in SrNbO3 (SNO) thin films epitaxially grown on (110)-oriented DyScO3 has been reported. SNO films are fabricated by the pulsed laser deposition technique at different partial O-2 pressure to vary the oxygen content and their structural, optical, and transport properties are probed. SNO unit cell has been found to shrink vertically as the oxygen content increases but keeping the epitaxial matching with the substrate. The results of Fourier-transform infra-red spectroscopy show that highly oxygenated SNO samples (i.e., grown at high oxygen pressure) show distinct optical conductivity behavior with respect to oxygen deficient films, hence demonstrating the insulating character of the formers with respect to those fabricated with lower pressure conditions. Tailoring the optical absorption and conductivity of strontium niobate epitaxial films across the MIT will favor novel applications of this material.
Iris type:
01.01 Articolo in rivista
Keywords:
high-resolution transmission electron microscopy; infrared spectroscopy; perovskite oxides; thin-films; X-ray powder diffraction
List of contributors:
Rossi, Giorgio; Lupi, Stefano; Bigi, Chiara; Chaluvadi, SANDEEP KUMAR; Knez, Daniel; Rajak, Piu; Mercuri, Francesco; Ciancio, Regina; Borgatti, Francesco; Fujii, Jun; Orgiani, Pasquale
Authors of the University:
BORGATTI FRANCESCO
FUJII JUN
MERCURI FRANCESCO
ORGIANI PASQUALE
Handle:
https://iris.cnr.it/handle/20.500.14243/432516
Published in:
ADVANCED ELECTRONIC MATERIALS
Journal
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URL

https://onlinelibrary.wiley.com/doi/epdf/10.1002/aelm.202101338
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