Electromechanical properties such as d33 and strain are significantly enhanced at morphotropic phase boundaries (MPBs) between two or more different crystal structures. Many actuators, sensors and MEMS devices are therefore systems with MPBs, usually between polar phases in lead (Pb)-based ferroelectric ceramics. In the search for Pb-free alternatives, systems with MPBs between polar and non-polar phases have recently been theorized as having great promise. While such an MPB was identified in rare-earth (RE) modified bismuth ferrite (BFO) thin films, synthesis challenges have prevented its realization in ceramics. Overcoming these, we demonstrate a comparable electromechanical response to Pb-based materials at the polar-to-non-polar ...
Lead-free piezoceramics with the composition 0.7(Bi1-xNdx)FeO3-0.3BaTiO3+0.1wt% MnO2 (BNxF-BT) were ...
It has been widely accepted that electric fields favor the ferroelectric phase with parallel electri...
The discovery of lead-free piezoelectric materials is crucial for future information and energy stor...
Ferroelectric based piezoceramics exhibiting large electromechanical response are used as sensors, a...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” UrFU was used. The research ...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
This thesis is motivated by the recent discovery of a lead-free morphotropic phase boundary (MPB) in...
The main mechanism of properties enhancement in the morphotropic phase boundary region separating te...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
The electric field-induced antiferroelectric-to-ferroelectric phase transition is investigated throu...
The electromechanical behavior of (1-x)Bi0.5Na0.5TiO3-xK(0.5)Na(0.5)NbO(3) (BNT-KNN) lead free piezo...
The electric field-induced antiferroelectric-to-ferroelectric phase transition is investigated throu...
Piezoelectric materials, which convert mechanical to electrical energy and vice versa, are typically...
Lead-free piezoceramics with the composition 0.7(Bi1-xNdx)FeO3-0.3BaTiO3+0.1wt% MnO2 (BNxF-BT) were ...
It has been widely accepted that electric fields favor the ferroelectric phase with parallel electri...
The discovery of lead-free piezoelectric materials is crucial for future information and energy stor...
Ferroelectric based piezoceramics exhibiting large electromechanical response are used as sensors, a...
The equipment of the Ural Center for Shared Use “Modern nanotechnology” UrFU was used. The research ...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
This thesis is motivated by the recent discovery of a lead-free morphotropic phase boundary (MPB) in...
The main mechanism of properties enhancement in the morphotropic phase boundary region separating te...
Coupling of order parameters provides a means to tune functionality in advanced materials including ...
There is a general perception that a large piezoelectric response in ferroelectric solid solutions r...
The electric field-induced antiferroelectric-to-ferroelectric phase transition is investigated throu...
The electromechanical behavior of (1-x)Bi0.5Na0.5TiO3-xK(0.5)Na(0.5)NbO(3) (BNT-KNN) lead free piezo...
The electric field-induced antiferroelectric-to-ferroelectric phase transition is investigated throu...
Piezoelectric materials, which convert mechanical to electrical energy and vice versa, are typically...
Lead-free piezoceramics with the composition 0.7(Bi1-xNdx)FeO3-0.3BaTiO3+0.1wt% MnO2 (BNxF-BT) were ...
It has been widely accepted that electric fields favor the ferroelectric phase with parallel electri...
The discovery of lead-free piezoelectric materials is crucial for future information and energy stor...