The effects of excessive Bi on the structural, electrical and multiferroic properties of the La-doped Bi6Fe2Ti3O18 (Bi5.25La0.75Fe2Ti3O18) thin films prepared on Pt(111)/Ti/SiO2/Si(100) substrates by using a chemical solution deposition method are reported. The structures of the thin films were studied by using X-ray diffraction, Raman scattering spectroscopy and scanning electron microscopy. From the experimental comparisons, a low electrical leakage current of 1.84 × 10-5 A/cm2 at 100 kV/cm and enhanced ferroelectric properties, such as a large remnant polarization (2Pr) of 10.5 μC/cm2 and a low coercive field (2Ec) of 400 kV/cm at 485 kV/cm, were observed for the 5% Biexcess La-doped Bi6Fe2Ti3O18 thin film. The formation of a stable bism...
In this communication, we report the successful growth of high-quality Aurivillius oxide thin films ...
Multiferroics intertwine ferroelectric and ferromagnetic properties, allowing for novel ways of mani...
Bi[sub 0.825]Nd[sub 0.175]FeO₃ (BNFO) thin film is grown on Pt/TiO₂/SiO₂/Si substrate by pulsed lase...
The effects of excessive Bi on the structural, electrical and multiferroic properties of the La-dope...
The effects of donor Nb5+-ion doping on the structural, electrical, and multiferroic properties of a...
The effects of donor Nb5+-ion doping on the structural, electrical, and multiferroic properties of a...
Aurivillius-phase six-layered Bi7Fe3Ti3O21 (BFTO21) and Nd-doped Bi6.4Nd0.6Fe3Ti3O21 (BNdFTO21) thin...
Aurivillius-phase six-layered Bi7Fe3Ti3O21 (BFTO21) and Nd-doped Bi6.4Nd0.6Fe3Ti3O21 (BNdFTO21) thin...
Aurivillius phase thin films of Bi5Ti3(FexMn1−x)O15 with x = 1 (Bi5Ti3FeO15) and 0.7 (Bi5Ti3Fe0.7Mn0...
Aurivillius phase thin films of Bi5Ti3(FexMn1−x)O15 with x = 1 (Bi5Ti3FeO15) and 0.7 (Bi5Ti3Fe0.7Mn0...
Naturally super-latticed Aurivillius phase ferroelectrics can accommodate various magnetic ions, ope...
Lanthanum doped bismuth titanate (Bi3.25La0.75Ti3O12 abbreviated as BLT) has been known as one of ty...
Here, we report the effect of A-site substitution of Tb at the expense of Bi on the ferroelectric an...
Herein is presented a novel chemical vapour deposition (CVD) route for the fabrication of oxide ferr...
The textured multilayer (ML) thin films of bismuth layered ferroelectric (FE) compounds, Bi2VO5.5 (B...
In this communication, we report the successful growth of high-quality Aurivillius oxide thin films ...
Multiferroics intertwine ferroelectric and ferromagnetic properties, allowing for novel ways of mani...
Bi[sub 0.825]Nd[sub 0.175]FeO₃ (BNFO) thin film is grown on Pt/TiO₂/SiO₂/Si substrate by pulsed lase...
The effects of excessive Bi on the structural, electrical and multiferroic properties of the La-dope...
The effects of donor Nb5+-ion doping on the structural, electrical, and multiferroic properties of a...
The effects of donor Nb5+-ion doping on the structural, electrical, and multiferroic properties of a...
Aurivillius-phase six-layered Bi7Fe3Ti3O21 (BFTO21) and Nd-doped Bi6.4Nd0.6Fe3Ti3O21 (BNdFTO21) thin...
Aurivillius-phase six-layered Bi7Fe3Ti3O21 (BFTO21) and Nd-doped Bi6.4Nd0.6Fe3Ti3O21 (BNdFTO21) thin...
Aurivillius phase thin films of Bi5Ti3(FexMn1−x)O15 with x = 1 (Bi5Ti3FeO15) and 0.7 (Bi5Ti3Fe0.7Mn0...
Aurivillius phase thin films of Bi5Ti3(FexMn1−x)O15 with x = 1 (Bi5Ti3FeO15) and 0.7 (Bi5Ti3Fe0.7Mn0...
Naturally super-latticed Aurivillius phase ferroelectrics can accommodate various magnetic ions, ope...
Lanthanum doped bismuth titanate (Bi3.25La0.75Ti3O12 abbreviated as BLT) has been known as one of ty...
Here, we report the effect of A-site substitution of Tb at the expense of Bi on the ferroelectric an...
Herein is presented a novel chemical vapour deposition (CVD) route for the fabrication of oxide ferr...
The textured multilayer (ML) thin films of bismuth layered ferroelectric (FE) compounds, Bi2VO5.5 (B...
In this communication, we report the successful growth of high-quality Aurivillius oxide thin films ...
Multiferroics intertwine ferroelectric and ferromagnetic properties, allowing for novel ways of mani...
Bi[sub 0.825]Nd[sub 0.175]FeO₃ (BNFO) thin film is grown on Pt/TiO₂/SiO₂/Si substrate by pulsed lase...