We report the domain structure and ferroelectric properties of a 32 nm-thick Bi0.9Sm0.1FeO3film epitaxially grown on a LaAlO3 (LAO) substrate. This film exhibits a monoclinic Mc phase, with its monoclinic distortion and anisotropy of in-plane (IP) lattice parameters being both smaller than those of pure BiFeO3 (BFO) grown on LaAlO3. Polarization hysteresis loops measured using a quasi-planar capacitor show an in-planepolarization up to 30 μC/cm2. Piezoresponse force microcopy demonstrates that a 180° in-planepolarization switching accompanied by a 90° domain wall rotation takes place after electric poling. First-principles calculations suggest the differences between highly strained Sm-substituted and pure BiFeO3.Published versio
We present a comprehensive study of the physical properties of epitaxial cobalt-doped BiFeO3 films ∼...
The recent discoveries of both chemical-driven and strain-driven morphotropic phase boundaries (MPBs...
Recent works have shown that the domain walls of room-temperature multiferroic BiFeO3 (BFO) thin fil...
Crystal and domain structures, and ferroelectric properties of tensile-strained BiFeO3 epitaxial fil...
In this article, we report the substrate effect on ferroelectric and magnetic properties of epitaxia...
BiFeO3 (BFO), a room temperature multiferroic, undergoes a series of structural transformations unde...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
A morphotropic phase boundary driven by epitaxial strain has been observed in lead-free multiferroic...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
A morphotropic phase boundary driven by epitaxial strain has been observed in lead-free multiferroic...
Multiferroic materials have gained considerable interest recently because of the intriguing fundamen...
We have investigated the nanoscale switching properties of strain-engineered BiFeO3 thin films depos...
In functional oxide films, different electrical/mechanical boundaries near film surfaces induce rich...
We have investigated the nanoscale switching properties of strain-engineered BiFeO(3) thin films dep...
We present a comprehensive study of the physical properties of epitaxial cobalt-doped BiFeO3 films ∼...
The recent discoveries of both chemical-driven and strain-driven morphotropic phase boundaries (MPBs...
Recent works have shown that the domain walls of room-temperature multiferroic BiFeO3 (BFO) thin fil...
Crystal and domain structures, and ferroelectric properties of tensile-strained BiFeO3 epitaxial fil...
In this article, we report the substrate effect on ferroelectric and magnetic properties of epitaxia...
BiFeO3 (BFO), a room temperature multiferroic, undergoes a series of structural transformations unde...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
A morphotropic phase boundary driven by epitaxial strain has been observed in lead-free multiferroic...
The presence of domains in ferroic materials can negatively affect their macroscopic properties and ...
A morphotropic phase boundary driven by epitaxial strain has been observed in lead-free multiferroic...
Multiferroic materials have gained considerable interest recently because of the intriguing fundamen...
We have investigated the nanoscale switching properties of strain-engineered BiFeO3 thin films depos...
In functional oxide films, different electrical/mechanical boundaries near film surfaces induce rich...
We have investigated the nanoscale switching properties of strain-engineered BiFeO(3) thin films dep...
We present a comprehensive study of the physical properties of epitaxial cobalt-doped BiFeO3 films ∼...
The recent discoveries of both chemical-driven and strain-driven morphotropic phase boundaries (MPBs...
Recent works have shown that the domain walls of room-temperature multiferroic BiFeO3 (BFO) thin fil...