This study examines the atomic force microscope (AFM) tip-based electrical formation of tens of microns long stripe (and B100nm wide) inorganic one-dimensional nanostructures based on the morphotropic phase boundary of La-doped BiFeO3 epitaxial thin films. The substitution of Lanthanum into bismuth ferrite not only produces the formation of straight stripe mixedphase patterns but also improves the spatial continuity drastically by two orders of magnitude. We create, switch and erase stripe nanostructures in a reversible and deterministic way. We demonstrate that electrically formed areas with a nearly single variant alignment can be overwritten with different alignments repeatedly, which reflects the reversible and nonvolatile nature of the...
Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
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...
We present an approach to control resistive switching in metal-ferroelectric contacts using a radial...
Symposium H - Nanodevices and Nanofabrication: ICMAT11-A-0715An anisotropic mechanism has been devel...
International audienceSelective control of the switching path in multiferroics such as BiFeO3 (BFO) ...
In this work, the local conductance of the tetragonal-like (T-like) and rhombohedral-like (R-like) p...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO3 thin films is ch...
A complex interplay of physics and chemistry in transition metal oxides determines their electronic,...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
We have investigated the nanoscale switching properties of strain-engineered BiFeO(3) thin films dep...
We have investigated the nanoscale switching properties of strain-engineered BiFeO3 thin films depos...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO<sub>3</sub> thin ...
Piezoelectric materials, which convert mechanical to electrical energy and vice versa, are typically...
Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
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...
We present an approach to control resistive switching in metal-ferroelectric contacts using a radial...
Symposium H - Nanodevices and Nanofabrication: ICMAT11-A-0715An anisotropic mechanism has been devel...
International audienceSelective control of the switching path in multiferroics such as BiFeO3 (BFO) ...
In this work, the local conductance of the tetragonal-like (T-like) and rhombohedral-like (R-like) p...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO3 thin films is ch...
A complex interplay of physics and chemistry in transition metal oxides determines their electronic,...
It is now well-established that boundaries separating tetragonal-like (T) and rhombohedral-like (R) ...
We have investigated the nanoscale switching properties of strain-engineered BiFeO(3) thin films dep...
We have investigated the nanoscale switching properties of strain-engineered BiFeO3 thin films depos...
The novel strain-driven morphotropic phase boundary (MPB) in highly strained BiFeO<sub>3</sub> thin ...
Piezoelectric materials, which convert mechanical to electrical energy and vice versa, are typically...
Highly-strained coherent interfaces, between rhombohedral-like (R) and tetragonal-like (T) phases in...
A wealth of fascinating phenomena have been discovered at the BiFeO3 domain walls, examples such as ...
Chemical-alloying is demonstrated to stabilize the mixed-phase structure of highly strained epitaxia...