The study of switching and polarization of the domains in coplanar electrode design structured BiFeO3 (BFO) thin films reaped very interesting similarities with widely studied stacked heterostructures. High polarization values (~90-100µC/cm2) and low coercive fields (50-100kV/cm) could be obtained indicating high quality of epitaxial films. Additionally, miscut angles play similar roles in domain pinning and further study of in-plane (IP) polarization directions employing the use of piezoresponse force microscopy confirmed the existence of 4 variants. However, coercive field values obtained had led to the discovery of deviations in the scaling law correlating thickness with coercive field and could re-open the possibility of additional stud...
In conventional junction-based photovoltaic cells, the photovoltage is usually smaller than the semi...
International audienceFerroelectric thin films are investigated for their potential in photovoltaic ...
Multiferroic BiFe0.5Cr0.5O3 (BFCO) in which ferroelectric and magnetic orders coexist has gained res...
The effect of domain structure on the photovoltaic response of BiFeO3 vertical capacitors is investi...
The relation between the piezoelectric response, polarization and conductivity polycrys-talline BiFe...
The nanoscale electrical properties of chemical-solution-deposition (CSD)-derived BiFeO3 grown on pu...
Epitaxial strain plays an important role in determining physical properties of perovskite ferroelect...
Epitaxial strain plays an important role in determining physical properties of perovskite ferroelect...
The optical properties of epitaxial BiFeO3 thin films have been characterized in the visible range. ...
Dramatically enhanced polarization has been found for (001), (101), and (111) films, relative to tha...
Sub-band level assisted conduction mechanisms are well known in the field of semiconducting material...
BiFeO3 (BFO) is one of the most important multiferroic materials that have seen a significant boost ...
We report external bias driven switchable photocurrent (anodic and cathodic) in 2.3 eV indirect band...
In conventional junction-based photovoltaic cells, the photovoltage is usually smaller than the semi...
We report external bias driven switchable photocurrent (anodic and cathodic) in 2.3 eV indirect band...
In conventional junction-based photovoltaic cells, the photovoltage is usually smaller than the semi...
International audienceFerroelectric thin films are investigated for their potential in photovoltaic ...
Multiferroic BiFe0.5Cr0.5O3 (BFCO) in which ferroelectric and magnetic orders coexist has gained res...
The effect of domain structure on the photovoltaic response of BiFeO3 vertical capacitors is investi...
The relation between the piezoelectric response, polarization and conductivity polycrys-talline BiFe...
The nanoscale electrical properties of chemical-solution-deposition (CSD)-derived BiFeO3 grown on pu...
Epitaxial strain plays an important role in determining physical properties of perovskite ferroelect...
Epitaxial strain plays an important role in determining physical properties of perovskite ferroelect...
The optical properties of epitaxial BiFeO3 thin films have been characterized in the visible range. ...
Dramatically enhanced polarization has been found for (001), (101), and (111) films, relative to tha...
Sub-band level assisted conduction mechanisms are well known in the field of semiconducting material...
BiFeO3 (BFO) is one of the most important multiferroic materials that have seen a significant boost ...
We report external bias driven switchable photocurrent (anodic and cathodic) in 2.3 eV indirect band...
In conventional junction-based photovoltaic cells, the photovoltage is usually smaller than the semi...
We report external bias driven switchable photocurrent (anodic and cathodic) in 2.3 eV indirect band...
In conventional junction-based photovoltaic cells, the photovoltage is usually smaller than the semi...
International audienceFerroelectric thin films are investigated for their potential in photovoltaic ...
Multiferroic BiFe0.5Cr0.5O3 (BFCO) in which ferroelectric and magnetic orders coexist has gained res...