Ferroic materials play an increasingly important role in novel (nano-)electronic applications. Recently, research on domain walls (DWs) received a big boost by the discovery of DW conductivity in bismuth ferrite (BiFeO3 ) and lead zirconate titanate (Pb(Zrx Ti1−x )O3) ferroic thin films. These achievements open a realistic and unique perspective to reproducibly engineer conductive paths and nanocontacts of sub-nanometer dimensions into wide-bandgap materials. The possibility to control and induce conductive DWs in insulating templates is a key step towards future innovative nanoelectronic devices [1]. This work focuses on the investigation of the charge transport along conductive DWs in ferroelectric single crystals. In the first part, the...
peer-reviewedFerroelectric domain walls (DWs) are the subject of intense research at present in the ...
Ferroelectrics are materials with a spontaneous electrical polarization, which can be switched by an...
Ferroelectric domain walls are of great interest as elementary building blocks for future electronic...
Ferroic materials play an increasingly important role in novel (nano-)electronic applications. Recen...
Conductive domain walls (CDWs) in insulating ferroelectrics have recently attracted considerable att...
Domain walls (DWs) in ferroelectric/ferroic materials have been a central research focus for the las...
Conductive domain walls (DWs) in insulating ferroelectrics have recently attracted considerable atte...
Ferroelectric domain walls are interfaces between areas of a material that exhibits different direct...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Conductive domain walls (DWs) in ferroic oxides as device elements are a highly attractive research ...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Domain walls, which are intrinsically two dimensional nano-objects exhibiting nontrivial electronic ...
Recently, electrically conducting heterointerfaces between dissimilar band-insulators (such as lanth...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
peer-reviewedFerroelectric domain walls (DWs) are the subject of intense research at present in the ...
Ferroelectrics are materials with a spontaneous electrical polarization, which can be switched by an...
Ferroelectric domain walls are of great interest as elementary building blocks for future electronic...
Ferroic materials play an increasingly important role in novel (nano-)electronic applications. Recen...
Conductive domain walls (CDWs) in insulating ferroelectrics have recently attracted considerable att...
Domain walls (DWs) in ferroelectric/ferroic materials have been a central research focus for the las...
Conductive domain walls (DWs) in insulating ferroelectrics have recently attracted considerable atte...
Ferroelectric domain walls are interfaces between areas of a material that exhibits different direct...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Conductive domain walls (DWs) in ferroic oxides as device elements are a highly attractive research ...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
Domain walls, which are intrinsically two dimensional nano-objects exhibiting nontrivial electronic ...
Recently, electrically conducting heterointerfaces between dissimilar band-insulators (such as lanth...
Conductive domain walls (DWs) in lithium niobate (LiNbO3, LNO) are promising constituents for potent...
peer-reviewedFerroelectric domain walls (DWs) are the subject of intense research at present in the ...
Ferroelectrics are materials with a spontaneous electrical polarization, which can be switched by an...
Ferroelectric domain walls are of great interest as elementary building blocks for future electronic...