Regenerated cellulose/BaTiO3 nanocomposite films were fabricated by incorporation of BaTiO3 nanoparticle (BTNP) or BaTiO3 nanofiber (BTNF) in regenerated cellulose (RC) via simple blending in aqueous NaOH/urea solution. The results showed that a proper addition of BTNP or BTNF could improve the dielectric constant, breakdown strength, energy density of RC and reduce the dielectric loss simultaneously. Meanwhile, RC-BTNF composites exhibited better dielectric and mechanical properties than RC-BTNP. Especially, the RC-2BTNF composite film with 2 vol % BTNF exhibited an ultrahigh discharged energy density of 13.14 J/cm3 at a breakdown strength of 370 MV/m. Moreover, the discharged energy density of 9.45 J/cm3 at 300 MV/m of RC-2BTNF is the hig...
In the search for environmentally friendly materials with a wide range of properties, polymer compos...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...
Ceramic-polymer nanocomposites, consisting of surface hydroxylated cube-shaped Ba0.6Sr0.4TiO3 nanopa...
In this paper, reinforcement of dielectric nanocomposite was performed for polyvinyl fluoride (PVDF)...
Traditional dielectric polymers are nonbiodegradable and nonrenewable petroleum-derived synthetic on...
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 current development of modern electronics has driven the need for new series of energy storage d...
In this report, flexible cross-linked polyarylene ether nitrile/functionalized barium titanate(CPEN/...
A study was conducted to demonstrate electrical energy storage in ferroelectric polymer nanocomposit...
Ferroelectric poly(vinylidene fluoride) (PVDF)-based polymer nanocomposites have garnered considera...
Flexible electrostatic capacitors are potentially applicable in modern electrical and electric power...
Polymer-based dielectric composites exhibiting high dielectric permittivity, low loss, high energy d...
Multilayer dielectric capacitors were fabricated from nanocomposite precursor comprised of BaTiO3@Ti...
The exploration of high-energy-density electrostatic capacitors capable of operating both efficientl...
In the search for environmentally friendly materials with a wide range of properties, polymer compos...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...
Ceramic-polymer nanocomposites, consisting of surface hydroxylated cube-shaped Ba0.6Sr0.4TiO3 nanopa...
In this paper, reinforcement of dielectric nanocomposite was performed for polyvinyl fluoride (PVDF)...
Traditional dielectric polymers are nonbiodegradable and nonrenewable petroleum-derived synthetic on...
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 current development of modern electronics has driven the need for new series of energy storage d...
In this report, flexible cross-linked polyarylene ether nitrile/functionalized barium titanate(CPEN/...
A study was conducted to demonstrate electrical energy storage in ferroelectric polymer nanocomposit...
Ferroelectric poly(vinylidene fluoride) (PVDF)-based polymer nanocomposites have garnered considera...
Flexible electrostatic capacitors are potentially applicable in modern electrical and electric power...
Polymer-based dielectric composites exhibiting high dielectric permittivity, low loss, high energy d...
Multilayer dielectric capacitors were fabricated from nanocomposite precursor comprised of BaTiO3@Ti...
The exploration of high-energy-density electrostatic capacitors capable of operating both efficientl...
In the search for environmentally friendly materials with a wide range of properties, polymer compos...
International audienceCarbon nanotubes have been intensively studied because of their unique physica...
Ceramic-polymer nanocomposites, consisting of surface hydroxylated cube-shaped Ba0.6Sr0.4TiO3 nanopa...