Though ferroelectric HfO₂ thin films are now well characterized, little is currently known about their grain substructure. In particular, the formation of domain and phase boundaries requires investigation to better understand phase stabilization, switching, and phase interconversion. Here, scanning transmission electron microscopy is applied to investigate the atomic structure of boundaries in these materials. It is found that orthorhombic/orthorhombic domain walls and coherent orthorhombic/monoclinic interphase boundaries form throughout individual grains. The results inform how interphase boundaries can impose strain conditions that may be key to phase stabilization. Moreover, the atomic structure near interphase boundary walls suggests ...
High-resolution electron microscopy (HREM) has been used to study the atomic-scale structure and loc...
We use in situ transmission electron microscopy to directly observe, at high temporal and spatial re...
This thesis is motivated by the recent discovery of a lead-free morphotropic phase boundary (MPB) in...
Though ferroelectric HfO₂ thin films are now well characterized, little is currently known about the...
The macroscopic properties of ferroelectric materials depend directly on the domain configuration an...
Abstract Atomic layer engineering is investigated to tailor the morphotropic phase boundary (MPB) be...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Thin films of inorganic materials are used in diverse applications, typically in polycrystalline for...
Inhomogeneous states caused by the coexistence of the ferroelectric (FE) and antiferroelectric (AFE)...
Investigating domain boundaries and their effects on the behaviour of materials automatically implie...
The intrinsic mobile interfaces in ferroelectrics—the domain walls can drive and enhance diverse fer...
Structure of 90{degree} ferroelectric domain boundaries in barium titanate ceramics has been studied...
The atomic-level response of zigzag ferroelectric domain walls (DWs) was investigated with in situ b...
We investigate the atomistic structure of ferroelastic-ferroelectric 90∘ domain walls in PbTiO3 with...
Most ferroelectrics are also ferroelastics (hysteretic stress-strain relationship and response to me...
High-resolution electron microscopy (HREM) has been used to study the atomic-scale structure and loc...
We use in situ transmission electron microscopy to directly observe, at high temporal and spatial re...
This thesis is motivated by the recent discovery of a lead-free morphotropic phase boundary (MPB) in...
Though ferroelectric HfO₂ thin films are now well characterized, little is currently known about the...
The macroscopic properties of ferroelectric materials depend directly on the domain configuration an...
Abstract Atomic layer engineering is investigated to tailor the morphotropic phase boundary (MPB) be...
In ferroelectric materials, enhanced dielectric and piezoelectric property coefficients are found in...
Thin films of inorganic materials are used in diverse applications, typically in polycrystalline for...
Inhomogeneous states caused by the coexistence of the ferroelectric (FE) and antiferroelectric (AFE)...
Investigating domain boundaries and their effects on the behaviour of materials automatically implie...
The intrinsic mobile interfaces in ferroelectrics—the domain walls can drive and enhance diverse fer...
Structure of 90{degree} ferroelectric domain boundaries in barium titanate ceramics has been studied...
The atomic-level response of zigzag ferroelectric domain walls (DWs) was investigated with in situ b...
We investigate the atomistic structure of ferroelastic-ferroelectric 90∘ domain walls in PbTiO3 with...
Most ferroelectrics are also ferroelastics (hysteretic stress-strain relationship and response to me...
High-resolution electron microscopy (HREM) has been used to study the atomic-scale structure and loc...
We use in situ transmission electron microscopy to directly observe, at high temporal and spatial re...
This thesis is motivated by the recent discovery of a lead-free morphotropic phase boundary (MPB) in...