Ferroelectric domain walls are quasi-2D systems that show great promise for the development of nonvolatile memory, memristor technology, and electronic components with ultrasmall feature size. Electric fields, for example, can change the domain wall orientation relative to the spontaneous polarization and switch between resistive and conductive states, controlling the electrical current. Being embedded in a 3D material, however, the domain walls are not perfectly flat and can form networks, which leads to complex physical structures. In this work, the importance of the nanoscale structure for the emergent transport properties is demonstrated, studying electronic conduction in the 3D network of neutral and charged domain walls in ErMnO3. By ...
Atomically sharp domain walls in ferroelectrics are considered as an ideal platform to realize easy-...
Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturizati...
Transition metal oxides hold great potential for the development of new device paradigms because of ...
Ferroelectric domain walls are quasi-2D systems that show great promise for the development of nonvo...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Ferroelectric domain walls hold great promise as functional two-dimensional materials because of the...
Ferroelectric domain walls hold great promise as functional two-dimensional materials because of the...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
Ferroelectric domain walls have emerged as a new type of interface in which the dynamic characterist...
A new paradigm of domain wall nanoelectronics has emerged recently, in which the domain wall in a fe...
Ferroelectric domain walls are attracting broad attention as atomic-scale switches, diodes, and mobi...
Low-temperature electrostatic force microscopy (EFM) is used to probe unconventional domain walls in...
Domains in ferroelectrics were considered to be well understood by the middle of the last century: T...
Domain walls in ferroelectric semiconductors show promise as multifunctional two-dimensional element...
Atomically sharp domain walls in ferroelectrics are considered as an ideal platform to realize easy-...
Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturizati...
Transition metal oxides hold great potential for the development of new device paradigms because of ...
Ferroelectric domain walls are quasi-2D systems that show great promise for the development of nonvo...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Ferroelectric domain walls hold great promise as functional two-dimensional materials because of the...
Ferroelectric domain walls hold great promise as functional two-dimensional materials because of the...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
Ferroelectric domain walls have emerged as a new type of interface in which the dynamic characterist...
A new paradigm of domain wall nanoelectronics has emerged recently, in which the domain wall in a fe...
Ferroelectric domain walls are attracting broad attention as atomic-scale switches, diodes, and mobi...
Low-temperature electrostatic force microscopy (EFM) is used to probe unconventional domain walls in...
Domains in ferroelectrics were considered to be well understood by the middle of the last century: T...
Domain walls in ferroelectric semiconductors show promise as multifunctional two-dimensional element...
Atomically sharp domain walls in ferroelectrics are considered as an ideal platform to realize easy-...
Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturizati...
Transition metal oxides hold great potential for the development of new device paradigms because of ...