Electrical field dependence of permittivity in (1 − x)AN-xBZN ceramics. Arrow directions down, up and down then up are related to domain switching, field induced transition and domain switching plus field induced transitions, respectively.</p
AbstractLead-free [(Bi0.5Na0.5)0.93Ba0.07]1-xLaxTi1-yZryO3 (BNBLTZ) ceramics were investigated for e...
Relaxor ferroelectrics with high energy storage performances are very attractive for modern applicat...
Due to worldwide environmental regulations, lead-free relaxors, namely Bi0.5Na0.5TiO3–6BaTiO3 (BNT-6...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density ([Formula: s...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
similarity_check: This document is Similarity Check deposited related_data: Supplementary Informatio...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
© 2020 Author(s). The development of electronic materials for storing electrical energy is a thrivin...
High-temperature dielectric ceramics are in urgent demand due to the rapid development of numerous e...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density (Wrec) that ...
Recently, ceramic capacitors with fast charge–discharge performance and excellent energy storage cha...
Dielectric ceramic materials have been actively studied for advanced pulsed power capacitor applicat...
AbstractLead-free [(Bi0.5Na0.5)0.93Ba0.07]1-xLaxTi1-yZryO3 (BNBLTZ) ceramics were investigated for e...
Relaxor ferroelectrics with high energy storage performances are very attractive for modern applicat...
Due to worldwide environmental regulations, lead-free relaxors, namely Bi0.5Na0.5TiO3–6BaTiO3 (BNT-6...
The mechanisms underpinning high energy storage density in lead-free Ag1–3xNdxTayNb1-yO3 antiferroel...
Lead-free dielectric ceramics with high recoverable energy density are highly desired to sustainably...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density ([Formula: s...
Uncovering lead-free materials with an exceptionally high recoverable energy density is vital for th...
similarity_check: This document is Similarity Check deposited related_data: Supplementary Informatio...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
© 2020 Author(s). The development of electronic materials for storing electrical energy is a thrivin...
High-temperature dielectric ceramics are in urgent demand due to the rapid development of numerous e...
Antiferroelectric materials that display double ferroelectric hysteresis loops are receiving increas...
It is crucial to discover lead-free materials with ultrahigh recoverable energy density (Wrec) that ...
Recently, ceramic capacitors with fast charge–discharge performance and excellent energy storage cha...
Dielectric ceramic materials have been actively studied for advanced pulsed power capacitor applicat...
AbstractLead-free [(Bi0.5Na0.5)0.93Ba0.07]1-xLaxTi1-yZryO3 (BNBLTZ) ceramics were investigated for e...
Relaxor ferroelectrics with high energy storage performances are very attractive for modern applicat...
Due to worldwide environmental regulations, lead-free relaxors, namely Bi0.5Na0.5TiO3–6BaTiO3 (BNT-6...