Among functional materials, oxides with a perovskite structure exhibit a large variety of properties which make them an active material of choice in a wide range of advanced devices. Antiferroelectricity is one such property and is characterized at the atomic scale by an antiparallel pattern of electrical dipoles. Lead zirconate (PbZrO3) is considered as the archetype of antiferroelectric perovskites. Despite its discovery more than 80 years ago, the physics presiding over the relationship between its structure and its properties remain to be established. This thesis aims to study the structure of lead zirconate under various conditions (temperature, electric field, hydrostatic pressure), the electrical properties of its phases, as well as ...
Metal oxides crystallized in perovskite structure are generally modified in two different ways. Acco...
The large family PbZrO3-based solid solutions are usually considered as antiferroelectric materials ...
International audienceFirst-principles calculations are performed to investigate several low-enthalp...
Among functional materials, oxides with a perovskite structure exhibit a large variety of properties...
Parmi les matériaux fonctionnels, les oxydes à structure pérovskite présentent une très grande varié...
Lead zirconate (PbZrO3) is considered the prototypical antiferroelectric material with an antipolar ...
Lead zirconate (PbZrO3) is considered the prototypical antiferroelectric material with an antipolar ...
peer reviewedUsing first-principles calculations, we investigate the structural and vibrational prop...
Antiferroelectric materials, where the transition between antipolar and polar phase is controlled by...
With the development of new energy resources, the advanced energy storage technologies are also beco...
Antiferroelectric lead zirconate is the key ingredient in modern ferroelectric and piezoelectric fun...
Antiferroelectrics are considered promising energy storage devices due to their reversible electric ...
International audienceWe survey the current state of the model antiferroelectric PbZrO3 (PZO) materi...
Metal oxides crystallized in perovskite structure are generally modified in two different ways. Acco...
The large family PbZrO3-based solid solutions are usually considered as antiferroelectric materials ...
International audienceFirst-principles calculations are performed to investigate several low-enthalp...
Among functional materials, oxides with a perovskite structure exhibit a large variety of properties...
Parmi les matériaux fonctionnels, les oxydes à structure pérovskite présentent une très grande varié...
Lead zirconate (PbZrO3) is considered the prototypical antiferroelectric material with an antipolar ...
Lead zirconate (PbZrO3) is considered the prototypical antiferroelectric material with an antipolar ...
peer reviewedUsing first-principles calculations, we investigate the structural and vibrational prop...
Antiferroelectric materials, where the transition between antipolar and polar phase is controlled by...
With the development of new energy resources, the advanced energy storage technologies are also beco...
Antiferroelectric lead zirconate is the key ingredient in modern ferroelectric and piezoelectric fun...
Antiferroelectrics are considered promising energy storage devices due to their reversible electric ...
International audienceWe survey the current state of the model antiferroelectric PbZrO3 (PZO) materi...
Metal oxides crystallized in perovskite structure are generally modified in two different ways. Acco...
The large family PbZrO3-based solid solutions are usually considered as antiferroelectric materials ...
International audienceFirst-principles calculations are performed to investigate several low-enthalp...