The development of advanced dielectric materials with high breakdown strength, high dischargeable energy densities, and great efficiencies is imperative to meet the ever-increasing demand of modern power systems and electronic devices. Herein, we present the layer-by-layer solution prepared bilayer-structured nanocomposite films with much enhanced capacitive performance via resolving the typical paradox between dielectric constant and breakdown strength in dielectric materials. The bilayered nanocomposite films are composed of Al2O3 dispersed in polystyrene as the interfacial barrier layer to inhibit electrical conduction and the polystyrene layer with TiO2 to enhance dielectric constant. The resulting layered film exhibits a discharged ene...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Polymer-based dielectric nanocomposites have attracted great attention due to the advantages of high...
The exploration of high-energy-density electrostatic capacitors capable of operating both efficientl...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
As a key material for capacitors, high-performance polymer dielectric films still exhibit the proble...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
To reach the full potential of polymer dielectrics in advanced electronics and electrified transport...
A composite approach to dielectric design has the potential to provide improved permittivity as well...
© 2020 Wiley-VCH GmbH Inorganic/organic dielectric nanocomposites have been extensively explored for...
High-performance electrostatic capacitors are in urgent demand owing to the rapid development of hig...
The interface between the polymer and the particle has a critical role in altering the properties of...
High-performance dielectric capacitors are critical for advanced electronics and electrical power sy...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Polymer-based dielectric nanocomposites have attracted great attention due to the advantages of high...
The exploration of high-energy-density electrostatic capacitors capable of operating both efficientl...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
As a key material for capacitors, high-performance polymer dielectric films still exhibit the proble...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
To reach the full potential of polymer dielectrics in advanced electronics and electrified transport...
A composite approach to dielectric design has the potential to provide improved permittivity as well...
© 2020 Wiley-VCH GmbH Inorganic/organic dielectric nanocomposites have been extensively explored for...
High-performance electrostatic capacitors are in urgent demand owing to the rapid development of hig...
The interface between the polymer and the particle has a critical role in altering the properties of...
High-performance dielectric capacitors are critical for advanced electronics and electrical power sy...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Nanoscale engineered materials such as nanocomposites can display or be designed to enhance their ma...
Polymer-based dielectric nanocomposites have attracted great attention due to the advantages of high...