Nb-doped BaTiO3 (BNTO) films were deposited on MgO substrates at different substrate temperatures by pulsed laser deposition. The temperature dependence of their resistivity, carrier mobility and carrier concentration were systematically investigated. It reveals that the BNTO films deposited at lower temperature show higher resistivity and lower carrier mobility, and only show semiconductor characteristics at measurement temperatures ranging from 10 to 400 K. There is a metal-semiconductor transition at about 20 K for the films grown at relatively higher temperature. The intrinsic mechanism responsible for the different charge transport behavior was revealed by microstructure studies. Low crystal quality and high density of microstructure d...
The effect of Nb on the microstructure and dielectric properties of BaTiO3 ceramics was investigated...
The temperature dependence of the DC electrical resistivity in a 0.2 at% Nb-doped BaTiO3 ceramic and...
The exploration for thermoelectric thin films of complex oxides such as SrTiO3-based oxides is drive...
Highly orientated BaTi1-xNbx03 thin films, spanning the entire range of x, have been successfully de...
Doped SrTiO3 thin films, 55 nm thick, were epitaxially grown by Pulsed Laser Deposition with niobium...
We have used in situ photoemission spectroscopy to investigate Niobium doping in polycristalline BaT...
We have used in situ photoemission spectroscopy to investigate Niobium doping in polycristalline BaT...
We have investigated the effect of ferroelectric barium titanate (BaTiO3) film thickness on the char...
We report on the effect of the substrate temperature on the growth dynamics and dielectric propertie...
The paper shows the experimental results of the substrate temperature effect on the morphological an...
International audienceConduction mechanisms in BaTiO3 films deposited at low temperatures on Cu elec...
The work presented here focuses on the study of doped BaTiO₃ (BTO) thin films deposited by magnetron...
The paper shows the experimental results of the substrate temperature effect on the morphological an...
[[abstract]]The influence of Nb-doping from 1.0 to 8.0 at.% on grain size, ferroelectric phase trans...
In this work, a study of the electrical properties and defect structure of PTCR (positive temperatur...
The effect of Nb on the microstructure and dielectric properties of BaTiO3 ceramics was investigated...
The temperature dependence of the DC electrical resistivity in a 0.2 at% Nb-doped BaTiO3 ceramic and...
The exploration for thermoelectric thin films of complex oxides such as SrTiO3-based oxides is drive...
Highly orientated BaTi1-xNbx03 thin films, spanning the entire range of x, have been successfully de...
Doped SrTiO3 thin films, 55 nm thick, were epitaxially grown by Pulsed Laser Deposition with niobium...
We have used in situ photoemission spectroscopy to investigate Niobium doping in polycristalline BaT...
We have used in situ photoemission spectroscopy to investigate Niobium doping in polycristalline BaT...
We have investigated the effect of ferroelectric barium titanate (BaTiO3) film thickness on the char...
We report on the effect of the substrate temperature on the growth dynamics and dielectric propertie...
The paper shows the experimental results of the substrate temperature effect on the morphological an...
International audienceConduction mechanisms in BaTiO3 films deposited at low temperatures on Cu elec...
The work presented here focuses on the study of doped BaTiO₃ (BTO) thin films deposited by magnetron...
The paper shows the experimental results of the substrate temperature effect on the morphological an...
[[abstract]]The influence of Nb-doping from 1.0 to 8.0 at.% on grain size, ferroelectric phase trans...
In this work, a study of the electrical properties and defect structure of PTCR (positive temperatur...
The effect of Nb on the microstructure and dielectric properties of BaTiO3 ceramics was investigated...
The temperature dependence of the DC electrical resistivity in a 0.2 at% Nb-doped BaTiO3 ceramic and...
The exploration for thermoelectric thin films of complex oxides such as SrTiO3-based oxides is drive...