Polymer nanocomposites have been extensively studied for dielectric energy storage applications, however, the relatively low breakdown strength due to inevitable defects and voids limits themselves in the development of the high energy density capacitors while large-scale manufacturing. Herein, we propose a facile strategy to improve the breakdown strength and thus energy density by synergistically designing the intermolecular structure in a ternary polymer blend composed of poly(methyl methacrylate), poly(vinylidene fluoride), and poly(vinylidene fluoride-hexafluoropropylene). We show that the appropriate quenching temperature can decrease crystal size and increase the fraction of the amorphous phase. Meanwhile, by designing the mass ratio...
Energy storage materials are urgently demanded in modern electric power supply and renewable energy ...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
© 2020 Wiley-VCH GmbH Inorganic/organic dielectric nanocomposites have been extensively explored for...
Radars, defibrillators, high energy lasers, power inverters in electric vehicles are all application...
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...
Dielectrics can be used to store electric energy in capacitors and high-energy density of the materi...
The development of light and flexible capacitive energy storage devices with high electrical energy ...
Polymer dielectrics with high energy density and low dielectric loss are highly desired due to the r...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
Polymer nanocomposites with high energy density and low dielectric loss are highly desirable in elec...
With the rapid development of modern electrical and electronic applications, the demand for high-per...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
High-performance dielectric capacitors are critical for advanced electronics and electrical power sy...
High-performance electrostatic capacitors are in urgent demand owing to the rapid development of hig...
Energy storage materials are urgently demanded in modern electric power supply and renewable energy ...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
© 2020 Wiley-VCH GmbH Inorganic/organic dielectric nanocomposites have been extensively explored for...
Radars, defibrillators, high energy lasers, power inverters in electric vehicles are all application...
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...
Dielectrics can be used to store electric energy in capacitors and high-energy density of the materi...
The development of light and flexible capacitive energy storage devices with high electrical energy ...
Polymer dielectrics with high energy density and low dielectric loss are highly desired due to the r...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
Polymer nanocomposites with high energy density and low dielectric loss are highly desirable in elec...
With the rapid development of modern electrical and electronic applications, the demand for high-per...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
High-performance dielectric capacitors are critical for advanced electronics and electrical power sy...
High-performance electrostatic capacitors are in urgent demand owing to the rapid development of hig...
Energy storage materials are urgently demanded in modern electric power supply and renewable energy ...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
© 2020 Wiley-VCH GmbH Inorganic/organic dielectric nanocomposites have been extensively explored for...