Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably meet the future energy demand. AgNbO 3 -based lead-free antiferroelectric ceramics with double ferroelectric hysteresis loops have been proved to be potential candidates for energy storage applications. Enhanced energy storage performance with recoverable energy density of 3.3 J/cm 3 and high thermal stability with minimal energy density variation ( \u3c 10%) over a temperature range of 20-120 °C have been achieved in W-modified AgNbO 3 ceramics. It is revealed that the W 6+ cations substitute the B-site Nb 5+ and reduce the polarizability of B-site cations, leading to the enhanced antiferroelectricity, which is confirmed by the polarization...
Energy storage materials and their applications have long been areas of intense research interest fo...
Sodium niobate (NaNbO3)-based lead-free ceramics have been actively studied for energy storage appli...
Antiferroelectric materials with double hysteresis loops are attractive for energy storage applicati...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
AgNbO3 based antiferroelectric (AFE) ceramics have large maximum polarization and low remanent polar...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density ([Formula: s...
Dielectric ceramic materials have been actively studied for advanced pulsed power capacitor applicat...
La-doped AgNbO3 lead-free ceramics were fabricated by conventional solid-state reaction, and the pha...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Dielectric materials with high energy density have attracted much attention due to their potential a...
The high-energy storage density reported in lead-free AgNbO3ceramics makes it a fascinating material...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
Electrical field dependence of permittivity in (1 − x)AN-xBZN ceramics. Arrow directions down, up an...
Energy storage materials and their applications have long been areas of intense research interest fo...
Sodium niobate (NaNbO3)-based lead-free ceramics have been actively studied for energy storage appli...
Antiferroelectric materials with double hysteresis loops are attractive for energy storage applicati...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
AgNbO3 based antiferroelectric (AFE) ceramics have large maximum polarization and low remanent polar...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density ([Formula: s...
Dielectric ceramic materials have been actively studied for advanced pulsed power capacitor applicat...
La-doped AgNbO3 lead-free ceramics were fabricated by conventional solid-state reaction, and the pha...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Dielectric materials with high energy density have attracted much attention due to their potential a...
The high-energy storage density reported in lead-free AgNbO3ceramics makes it a fascinating material...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
Electrical field dependence of permittivity in (1 − x)AN-xBZN ceramics. Arrow directions down, up an...
Energy storage materials and their applications have long been areas of intense research interest fo...
Sodium niobate (NaNbO3)-based lead-free ceramics have been actively studied for energy storage appli...
Antiferroelectric materials with double hysteresis loops are attractive for energy storage applicati...