Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in BiFeO3 thin films, often show enhanced electrical conductivity in comparison to non-interfacial regions. In principle, changing the population and distribution of these interfaces should therefore allow different resistance states to be created. However, doing this controllably has been challenging to date. Here, we show that local thin film phase microstructures (and hence R–T interface densities) can be changed in a thermodynamically predictable way (predictions made using atomistic simulations) by applying different combinations of mechanical stress and electric field. We use both pressure and electric field to reversibly generate metasta...
The resistive switching (RS) of Au/BiFeO3/SrRuO3 samples was shown to be controllable by using a the...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO3 thin films is ch...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO<sub>3</sub> thin ...
Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in...
We present an approach to control resistive switching in metal-ferroelectric contacts using a radial...
The realization of a mixed-phase microstructure in strained BiFeO3 (BFO) thin films has led to numer...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
In this work, the local conductance of the tetragonal-like (T-like) and rhombohedral-like (R-like) p...
The presence of a variety of structural variants in BiFeO3 thin films give rise to exotic electric-f...
In functional oxide films, different electrical/mechanical boundaries near film surfaces induce rich...
This study examines the atomic force microscope (AFM) tip-based electrical formation of tens of micr...
Chemical-alloying is demonstrated to stabilize the mixed-phase structure of highly strained epitaxia...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
The resistive switching (RS) of Au/BiFeO3/SrRuO3 samples was shown to be controllable by using a the...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO3 thin films is ch...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO<sub>3</sub> thin ...
Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in...
We present an approach to control resistive switching in metal-ferroelectric contacts using a radial...
The realization of a mixed-phase microstructure in strained BiFeO3 (BFO) thin films has led to numer...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
In this work, the local conductance of the tetragonal-like (T-like) and rhombohedral-like (R-like) p...
The presence of a variety of structural variants in BiFeO3 thin films give rise to exotic electric-f...
In functional oxide films, different electrical/mechanical boundaries near film surfaces induce rich...
This study examines the atomic force microscope (AFM) tip-based electrical formation of tens of micr...
Chemical-alloying is demonstrated to stabilize the mixed-phase structure of highly strained epitaxia...
Understanding switching mechanisms in multiferroics such as BiFeO3 (BFO) is an important challenge t...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
The resistive switching (RS) of Au/BiFeO3/SrRuO3 samples was shown to be controllable by using a the...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO3 thin films is ch...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO<sub>3</sub> thin ...