Developing high-performance film dielectrics for capacitive energy storage has been a great challenge for modern electrical devices. Despite good results obtained in lead titanate-based dielectrics, lead-free alternatives are strongly desirable due to environmental concerns. Here we demonstrate that giant energy densities of ~70 J cm-3, together with high efficiency as well as excellent cycling and thermal stability, can be achieved in lead-free bismuth ferrite-strontium titanate solid-solution films through domain engineering. It is revealed that the incorporation of strontium titanate transforms the ferroelectric micro-domains of bismuth ferrite into highly-dynamic polar nano-regions, resulting in a ferroelectric to relaxor-ferroelectric ...
With the development of renewable energy sources such as wind and solar to potentially replace the t...
Industry has been seeking a thin-film capacitor that can work at high temperature in a harsh environ...
With the ever-increasing demand for energy, research on energy storage materials is imperative. Ther...
BiFeO3-BaTiO3 is a promising base for developing high energy density capacitors. However, no reports...
Dielectric capacitors with ultrahigh power densities are fundamental energy storagecomponents in ele...
Dielectric capacitors have the highest charge/discharge speed among all electrical energy devices, b...
We report record energy storage density (>80 J·cm-3) in Pb-free relaxor ferroelectrics based on Mn-d...
Lead-free perovskite oxide thin films prepared by alloying of titanates and materials with lower mel...
We report record energy storage density (>80 J cm(-3)) in Pb-free relaxor ferroelectrics based on...
Novel A-site deficient (1-x-y)Bi0.5Na0.5TiO3-xBaTiO3-yBi0.2Sr0.7TiO3 lead-free relaxor ferroelectric...
The current approach to achieving superior energy storage density in dielectrics is to increase thei...
Dielectric capacitors offer high-power density and ultrafast discharging times as compared to electr...
Ferroelectrics/antiferroelectrics with high dielectric breakdown strength have the potential to stor...
Thin film dielectrics are the most selected materials for many power electronics owing to their inhe...
Dielectric capacitors are very attractive for high power energy storage. However, the low energy den...
With the development of renewable energy sources such as wind and solar to potentially replace the t...
Industry has been seeking a thin-film capacitor that can work at high temperature in a harsh environ...
With the ever-increasing demand for energy, research on energy storage materials is imperative. Ther...
BiFeO3-BaTiO3 is a promising base for developing high energy density capacitors. However, no reports...
Dielectric capacitors with ultrahigh power densities are fundamental energy storagecomponents in ele...
Dielectric capacitors have the highest charge/discharge speed among all electrical energy devices, b...
We report record energy storage density (>80 J·cm-3) in Pb-free relaxor ferroelectrics based on Mn-d...
Lead-free perovskite oxide thin films prepared by alloying of titanates and materials with lower mel...
We report record energy storage density (>80 J cm(-3)) in Pb-free relaxor ferroelectrics based on...
Novel A-site deficient (1-x-y)Bi0.5Na0.5TiO3-xBaTiO3-yBi0.2Sr0.7TiO3 lead-free relaxor ferroelectric...
The current approach to achieving superior energy storage density in dielectrics is to increase thei...
Dielectric capacitors offer high-power density and ultrafast discharging times as compared to electr...
Ferroelectrics/antiferroelectrics with high dielectric breakdown strength have the potential to stor...
Thin film dielectrics are the most selected materials for many power electronics owing to their inhe...
Dielectric capacitors are very attractive for high power energy storage. However, the low energy den...
With the development of renewable energy sources such as wind and solar to potentially replace the t...
Industry has been seeking a thin-film capacitor that can work at high temperature in a harsh environ...
With the ever-increasing demand for energy, research on energy storage materials is imperative. Ther...