To obtain the electrical properties of strained ferroelectric thin films, bottom electrodes with lattice constants and thermal coefficients matched to both films and substrates are needed. The interface structure, strain configuration, and strain relaxation in such bilayer systems are different from those in single layer systems. Here, we report transmission electron microscopy studies of epitaxial BaTiO3 films grown on GdScO3 and DyScO3 substrates with buried SrRuO3 layers. We found that the different strain relaxation behaviors observed in the bilayer are mainly dependent on lattice mismatch of each layer to the substrate and the thicknesses of each layer.open7
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
High-quality BaTiO3 films with thicknesses ranging from 2.9 to 175 nm were grown epitaxially on SrRu...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
For epitaxial films, a critical thickness (t(c)) can create a phenomenological interface between a s...
For epitaxial films, a critical thickness (t(c)) can create a phenomenological interface between a s...
Effects of induced biaxial strain on the electrical transport and magnetic properties of epitaxialth...
Effects of induced biaxial strain on the electrical transport and magnetic properties of epitaxialth...
Strain can strongly modify the electronic characteristics of oxide materials. For instance the phase...
The impact of strain on structure and ferroelectric properties of epitaxial SrTiO3 films on various ...
The atomic structure of epitaxial BaTiO3 films grown on SrRuO3-covered (001)SrTiO3 substrates by pul...
We report the effect of lattice stress relaxation on the microstructures of epitaxial thin films by ...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
Controlling the growth of complex relaxor ferroelectric thin films and understanding the relationshi...
BaxSr1−xTiO3 is ideally suited as a tunable medium for radio frequency passive component. In this co...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
High-quality BaTiO3 films with thicknesses ranging from 2.9 to 175 nm were grown epitaxially on SrRu...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
For epitaxial films, a critical thickness (t(c)) can create a phenomenological interface between a s...
For epitaxial films, a critical thickness (t(c)) can create a phenomenological interface between a s...
Effects of induced biaxial strain on the electrical transport and magnetic properties of epitaxialth...
Effects of induced biaxial strain on the electrical transport and magnetic properties of epitaxialth...
Strain can strongly modify the electronic characteristics of oxide materials. For instance the phase...
The impact of strain on structure and ferroelectric properties of epitaxial SrTiO3 films on various ...
The atomic structure of epitaxial BaTiO3 films grown on SrRuO3-covered (001)SrTiO3 substrates by pul...
We report the effect of lattice stress relaxation on the microstructures of epitaxial thin films by ...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
Controlling the growth of complex relaxor ferroelectric thin films and understanding the relationshi...
BaxSr1−xTiO3 is ideally suited as a tunable medium for radio frequency passive component. In this co...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...
High-quality BaTiO3 films with thicknesses ranging from 2.9 to 175 nm were grown epitaxially on SrRu...
Epitaxial strain can be efficiently used to modify the properties of ferroelectric thin films. From ...