The irreversible field-induced phase transition between the antiferroelectric (P) and ferroelectric (Q) polymorphs of sodium niobate (NaNbO 3) ceramics constitutes a focal point in improving the material’s energy storage properties. The coexistence of P and Q phases can be verified by X-ray and electron diffraction methods, but its extent remains elusive. Two-dimensional solid-state nuclear magnetic resonance (NMR) spectroscopy allows the quantification of relative amounts of the coexisting polymorphs, but the analysis of ceramic sample pieces requires a trade-off between sufficient sensitivity (at higher magnetic fields) and separation of the overlapping P and Q signals (at lower magnetic fields). In this contribution, we apply thesatellit...
Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase tr...
Antiferroelectric materials exhibit a unique electricfield- induced phase transition, which enables...
Lead-free antiferroelectric (AFE) materials have seen a surge of research activity in environmentall...
The irreversible field-induced phase transition between the antiferroelectric (P) and ferroelectric ...
The irreversible field-induced phase transition between the antiferroelectric (P) and ferroelectric...
Electric-field-induced phase transitions are the most important characteristics of antiferroelectric...
Sodium niobate (NaNbO3) has a particularly complex phase diagram, with a series of phase transitions...
Antiferroelectric materials represent a new generation of capacitor materials whose capacitance incr...
The influence of a material's length scale on its functional properties has been reported for many f...
Sodium niobate (NaNbO3 or NN) is described as "the most complex perovskite system,"which exhibits tr...
Switchable ferroelectric/antiferroelectric ceramics are of significant interest for high power energ...
Antiferroelectric materials exhibit electric field-induced phase transitions between antiferroelectr...
Antiferroelectric materials exhibit a unique electric-field-induced phase transition, which enables ...
Reversible field-induced phase transitions define antiferroelectric perovskite oxides and lay the fo...
International audienceThe two room-temperature NaNbO3 polymorphs crystallizing with orthorhombic sym...
Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase tr...
Antiferroelectric materials exhibit a unique electricfield- induced phase transition, which enables...
Lead-free antiferroelectric (AFE) materials have seen a surge of research activity in environmentall...
The irreversible field-induced phase transition between the antiferroelectric (P) and ferroelectric ...
The irreversible field-induced phase transition between the antiferroelectric (P) and ferroelectric...
Electric-field-induced phase transitions are the most important characteristics of antiferroelectric...
Sodium niobate (NaNbO3) has a particularly complex phase diagram, with a series of phase transitions...
Antiferroelectric materials represent a new generation of capacitor materials whose capacitance incr...
The influence of a material's length scale on its functional properties has been reported for many f...
Sodium niobate (NaNbO3 or NN) is described as "the most complex perovskite system,"which exhibits tr...
Switchable ferroelectric/antiferroelectric ceramics are of significant interest for high power energ...
Antiferroelectric materials exhibit electric field-induced phase transitions between antiferroelectr...
Antiferroelectric materials exhibit a unique electric-field-induced phase transition, which enables ...
Reversible field-induced phase transitions define antiferroelectric perovskite oxides and lay the fo...
International audienceThe two room-temperature NaNbO3 polymorphs crystallizing with orthorhombic sym...
Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase tr...
Antiferroelectric materials exhibit a unique electricfield- induced phase transition, which enables...
Lead-free antiferroelectric (AFE) materials have seen a surge of research activity in environmentall...