Polymer-based dielectric composites exhibiting high dielectric permittivity, low loss, high energy density, high charge-discharge efficiency, and easy process are critical to the development of cost-efficient and lightweight capacitors. BaTiO3/poly (vinylidene fluoride) (BT/PVDF) composites using two-dimensional (2-D) platelets were prepared and investigated in this work. The composites were prepared by a simple combination of solution cast and quenching treatment, without multiple-layer architecture or surface chemical treatment. The dielectric properties and energy storage performance of the composite were improved significantly compared to pristine PVDF. The composite film with a very low content of BT (1 wt%) illustrates a high discharg...
Barium titanate (BT) perovskite particles were surface modified by means of mechanical treatment and...
Polymer composite films with high energy density as well as high efficiency are promising dielectric...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...
Three-dimensional BaTiO3 (3D BT)/polyvinylidene fluoride (PVDF) composite dielectrics were fabricate...
To improve the dielectric performance of polyvinylidene fluoride (PVDF), BaTiO3/MWNTs/PVDF ternary c...
In order to improve the interfacial compatibility of PVDF-based nanocomposites, the BaTiO3 (BT) nano...
With the rapid development of modern electrical and electronic applications, the demand for high-per...
The influence of thermal treatment on the dielectric properties and energy storage performances of a...
AbstractWe have prepared films of polymer nano-composite (PNC) of poly[vinylidene-fluoride] (PVDF) a...
With the development of modern technology, the demand of high energy density dielectric capacitor de...
With the development of modern technology, the demand of high energy density dielectric capacitor de...
The purpose of this research was to develop dielectric films for high energy density capacitor appli...
The purpose of this research was to develop dielectric films for high energy density capacitor appli...
Energy storage materials are urgently demanded in modern electric power supply and renewable energy ...
Barium titanate (BT) perovskite particles were surface modified by means of mechanical treatment and...
Barium titanate (BT) perovskite particles were surface modified by means of mechanical treatment and...
Polymer composite films with high energy density as well as high efficiency are promising dielectric...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...
Three-dimensional BaTiO3 (3D BT)/polyvinylidene fluoride (PVDF) composite dielectrics were fabricate...
To improve the dielectric performance of polyvinylidene fluoride (PVDF), BaTiO3/MWNTs/PVDF ternary c...
In order to improve the interfacial compatibility of PVDF-based nanocomposites, the BaTiO3 (BT) nano...
With the rapid development of modern electrical and electronic applications, the demand for high-per...
The influence of thermal treatment on the dielectric properties and energy storage performances of a...
AbstractWe have prepared films of polymer nano-composite (PNC) of poly[vinylidene-fluoride] (PVDF) a...
With the development of modern technology, the demand of high energy density dielectric capacitor de...
With the development of modern technology, the demand of high energy density dielectric capacitor de...
The purpose of this research was to develop dielectric films for high energy density capacitor appli...
The purpose of this research was to develop dielectric films for high energy density capacitor appli...
Energy storage materials are urgently demanded in modern electric power supply and renewable energy ...
Barium titanate (BT) perovskite particles were surface modified by means of mechanical treatment and...
Barium titanate (BT) perovskite particles were surface modified by means of mechanical treatment and...
Polymer composite films with high energy density as well as high efficiency are promising dielectric...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...