Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase transformation between polar and nonpolar states have provided considerable attention to this class of materials even decades after the discovery of antiferroelectricity. After presenting the challenge of formulating a precise definition of antiferroelectric materials, we briefly summarize proposed applications. In the following, we focus on the crystallographic structures of the antiferroelectric and ferroelectric phases of NaNbO3, which is emerging as a promising alternative to PbZrO3-based systems. The field-induced phase transition behavior of NaNbO3-based AFE materials in the form of single crystals, bulk ceramics, and multilayer ceramic c...
A comprehensive review on the latest development of the antiferroelectric ↔ ferroelectric phase tran...
As a close relative of ferroelectricity, antiferroelectricity has received a recent resurgence of in...
Antiferroelectric materials exhibit a unique electric-field-induced phase transition, which enables ...
Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase tr...
This journal is © The Royal Society of Chemistry. Perovskite-structured antiferroelectric (AFE) mate...
Reversible field-induced phase transitions define antiferroelectric perovskite oxides and lay the fo...
Antiferroelectric materials represent a new generation of capacitor materials whose capacitance incr...
Benefitting from exceptional energy storage performance, dielectric-based capacitors are playing inc...
NaNbO3-based lead-free energy storage ceramics are essential candidates for next-generation pulsed p...
Electric-field-induced phase transitions are the most important characteristics of antiferroelectric...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
NaNbO3 (NN)-based lead-free antiferroelectric (AFE) ceramics with ultrahigh energy-storage density (...
Antiferroelectrics are considered promising energy storage devices due to their reversible electric ...
Dielectric energy-storage capacitors have received increasing attention in recent years due to the a...
Lead-free antiferroelectric (AFE) materials have seen a surge of research activity in environmentall...
A comprehensive review on the latest development of the antiferroelectric ↔ ferroelectric phase tran...
As a close relative of ferroelectricity, antiferroelectricity has received a recent resurgence of in...
Antiferroelectric materials exhibit a unique electric-field-induced phase transition, which enables ...
Emerging new applications of antiferroelectric perovskite oxides based on their fascinating phase tr...
This journal is © The Royal Society of Chemistry. Perovskite-structured antiferroelectric (AFE) mate...
Reversible field-induced phase transitions define antiferroelectric perovskite oxides and lay the fo...
Antiferroelectric materials represent a new generation of capacitor materials whose capacitance incr...
Benefitting from exceptional energy storage performance, dielectric-based capacitors are playing inc...
NaNbO3-based lead-free energy storage ceramics are essential candidates for next-generation pulsed p...
Electric-field-induced phase transitions are the most important characteristics of antiferroelectric...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
NaNbO3 (NN)-based lead-free antiferroelectric (AFE) ceramics with ultrahigh energy-storage density (...
Antiferroelectrics are considered promising energy storage devices due to their reversible electric ...
Dielectric energy-storage capacitors have received increasing attention in recent years due to the a...
Lead-free antiferroelectric (AFE) materials have seen a surge of research activity in environmentall...
A comprehensive review on the latest development of the antiferroelectric ↔ ferroelectric phase tran...
As a close relative of ferroelectricity, antiferroelectricity has received a recent resurgence of in...
Antiferroelectric materials exhibit a unique electric-field-induced phase transition, which enables ...