AgNbO3 based antiferroelectric (AFE) ceramics have large maximum polarization and low remanent polarization, and thus are important candidates for fabricating dielectric capacitors. However, their energy storage performances have been still large difference with those of lead-based AFEs because of their room-temperature ferrielectric (FIE) behavior. In this study, novel La3+ and Ta5+ co-substituted AgNbO3 ceramics are designed and developed. The introduction of La3+ and Ta5+ decreases the tolerance factor, reduces the polarizability of B-site cations and increases local structure heterogeneity of AgNbO3, which enhance AFE phase stability and refine polarization-electric field (P–E) loops. Besides, adding La3+ and Ta5+ into AgNbO3 ceramics c...
The high-energy storage density reported in lead-free AgNbO3ceramics makes it a fascinating material...
In this work, (1 [Formula: see text])(0.92NaNbO3–0.08BaTiO3)–[Formula: see text]Ca[Formula: see text...
It is a grand challenge to achieve high energy density (W) and efficiency (η) simultaneously under a...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
Dielectric materials with high energy density have attracted much attention due to their potential a...
La-doped AgNbO3 lead-free ceramics were fabricated by conventional solid-state reaction, and the pha...
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...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Energy storage materials and their applications have long been areas of intense research interest fo...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
Antiferroelectric materials with double hysteresis loops are attractive for energy storage applicati...
Copyright 2020 American Chemical Society. AgNbO3-based antiferroelectric ceramics have been actively...
The high-energy storage density reported in lead-free AgNbO3ceramics makes it a fascinating material...
In this work, (1 [Formula: see text])(0.92NaNbO3–0.08BaTiO3)–[Formula: see text]Ca[Formula: see text...
It is a grand challenge to achieve high energy density (W) and efficiency (η) simultaneously under a...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
Dielectric materials with high energy density have attracted much attention due to their potential a...
La-doped AgNbO3 lead-free ceramics were fabricated by conventional solid-state reaction, and the pha...
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...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Energy storage materials and their applications have long been areas of intense research interest fo...
NaNbO3-based antiferroelectric ceramics are promising candidates for high-performance energy storage...
Antiferroelectric materials with double hysteresis loops are attractive for energy storage applicati...
Copyright 2020 American Chemical Society. AgNbO3-based antiferroelectric ceramics have been actively...
The high-energy storage density reported in lead-free AgNbO3ceramics makes it a fascinating material...
In this work, (1 [Formula: see text])(0.92NaNbO3–0.08BaTiO3)–[Formula: see text]Ca[Formula: see text...
It is a grand challenge to achieve high energy density (W) and efficiency (η) simultaneously under a...