Perovskite-type N-substituted SrTiO3 thin films with a preferential (001) orientation were grown by pulsed laser deposition on (001)-oriented MgO and LaAlO3 substrates. Application of N2 or ammonia using a synchronized reactive gas pulse produces SrTiO3-x:Nx films with a nitrogen content of up to 4.1 at.% if prepared with the NH3 gas pulse at a substrate temperature of 720 °C. Incorporating nitrogen in SrTiO3 results in an optical absorption at 370-460 nm associated with localized N(2p) orbitals. The estimated energy of these levels is ≈2.7 eV below the conduction band. In addition, the optical absorption increases gradually with increasing nitrogen content
Perovskite-type nitrogen-doped SrTiO3 nanoparticles of 50–80 nm in diameter were successfully synthe...
Strontium titanate thin films have been prepared at different oxygen pressures and subjected to diff...
Strontium titanate thin films were deposited on a silicon substrate by radio-frequency magnetron spu...
Perovskite-type nitrogen substituted SrTiO3 thin films were deposited with a one-step process by RF-...
Perovskite-type oxynitrides exhibit promising electrical and optical properties and can possibly be ...
The knowledge of thickness, optical properties and doping profiles of thin film sarnples is essentia...
The knowledge of thickness, optical properties and doping profiles of thin film sarnples is essentia...
International audienceSrTiO3, SrTi0.99Nd0.01O3 and Sr0.99Nd0.01TiO3 thin films were synthesized by p...
International audienceSrTiO3, SrTi0.99Nd0.01O3 and Sr0.99Nd0.01TiO3 thin films were synthesized by p...
Thin-film solar cells made of Mg-doped SrTiO3 (STO) p-type absorbers are promising candidates for cl...
Strontium titanate, SrTiO3 thin films were successfully prepared by spray pyrolysis. The strontium t...
Nitrogen-doped titanium dioxide (TiO2) thin films were grown on (001) SiO2 substrates by reactive pu...
The results of structural and electrical characterizations of SrTiO3 thin films deposited onto MgO a...
The control of thin film stoichiometry is of primary relevance to achieve desired functionality. Pul...
Strontium titanate (SrTiO3) thin films sample were prepared by using spray pyrolysis technique onto ...
Perovskite-type nitrogen-doped SrTiO3 nanoparticles of 50–80 nm in diameter were successfully synthe...
Strontium titanate thin films have been prepared at different oxygen pressures and subjected to diff...
Strontium titanate thin films were deposited on a silicon substrate by radio-frequency magnetron spu...
Perovskite-type nitrogen substituted SrTiO3 thin films were deposited with a one-step process by RF-...
Perovskite-type oxynitrides exhibit promising electrical and optical properties and can possibly be ...
The knowledge of thickness, optical properties and doping profiles of thin film sarnples is essentia...
The knowledge of thickness, optical properties and doping profiles of thin film sarnples is essentia...
International audienceSrTiO3, SrTi0.99Nd0.01O3 and Sr0.99Nd0.01TiO3 thin films were synthesized by p...
International audienceSrTiO3, SrTi0.99Nd0.01O3 and Sr0.99Nd0.01TiO3 thin films were synthesized by p...
Thin-film solar cells made of Mg-doped SrTiO3 (STO) p-type absorbers are promising candidates for cl...
Strontium titanate, SrTiO3 thin films were successfully prepared by spray pyrolysis. The strontium t...
Nitrogen-doped titanium dioxide (TiO2) thin films were grown on (001) SiO2 substrates by reactive pu...
The results of structural and electrical characterizations of SrTiO3 thin films deposited onto MgO a...
The control of thin film stoichiometry is of primary relevance to achieve desired functionality. Pul...
Strontium titanate (SrTiO3) thin films sample were prepared by using spray pyrolysis technique onto ...
Perovskite-type nitrogen-doped SrTiO3 nanoparticles of 50–80 nm in diameter were successfully synthe...
Strontium titanate thin films have been prepared at different oxygen pressures and subjected to diff...
Strontium titanate thin films were deposited on a silicon substrate by radio-frequency magnetron spu...