Javascript must be enabled to continue!
Achieving High Energy Storage Performance in Polymer-Based Composites with Opposite Double Heterojunction Via Electric Field Tailoring
View through CrossRef
Polymer-based dielectric capacitors are well recognized for high energy density and efficiency. However, the energy density is restricted by the deterioration of breakdown strength with excessive addition of inorganic fillers. Herein, an innovative design of the lamellar-structured BiFeO 3 @TiO 2 (BFO@TO) fillers is proposed and a small amount of BFO@TO is added into PVDF/PMMA blended polymer to fabricate BFO@TO-PVDF/PMMA composites, which delivers an outstanding energy density of 19.3 J cm -3 at 549.2 kV mm -1 . The filler possesses a BFO/TO/BFO triple-layered structure. Due to the different Fermi level, electrons are injected from TO into BFO to form electron accumulation layer and construct the heterojunction electric fields between TO and BFO layers. Heterojunction electric fields at two interfaces produced by the triple-layered structure are opposite. The opposite double heterojunction can withstand larger external electric field and improve the breakdown strength. Besides, BFO, as a narrow bandgap semiconductor, is easier for electrons and holes to separate, which further widens the width of the built-in electric field and reduces the dielectric breakdown. Electric field distribution simulations intuitively confirm the enhancement of the breakdown strength. The results provide an effective strategy to address the critical issue of improving the breakdown strength for high energy storage capability.
Title: Achieving High Energy Storage Performance in Polymer-Based Composites with Opposite Double Heterojunction Via Electric Field Tailoring
Description:
Polymer-based dielectric capacitors are well recognized for high energy density and efficiency.
However, the energy density is restricted by the deterioration of breakdown strength with excessive addition of inorganic fillers.
Herein, an innovative design of the lamellar-structured BiFeO 3 @TiO 2 (BFO@TO) fillers is proposed and a small amount of BFO@TO is added into PVDF/PMMA blended polymer to fabricate BFO@TO-PVDF/PMMA composites, which delivers an outstanding energy density of 19.
3 J cm -3 at 549.
2 kV mm -1 .
The filler possesses a BFO/TO/BFO triple-layered structure.
Due to the different Fermi level, electrons are injected from TO into BFO to form electron accumulation layer and construct the heterojunction electric fields between TO and BFO layers.
Heterojunction electric fields at two interfaces produced by the triple-layered structure are opposite.
The opposite double heterojunction can withstand larger external electric field and improve the breakdown strength.
Besides, BFO, as a narrow bandgap semiconductor, is easier for electrons and holes to separate, which further widens the width of the built-in electric field and reduces the dielectric breakdown.
Electric field distribution simulations intuitively confirm the enhancement of the breakdown strength.
The results provide an effective strategy to address the critical issue of improving the breakdown strength for high energy storage capability.
Related Results
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
Analysis of Si/SiGe/Si double heterojunction band of a novelstructure of PIN electronic modulation
Analysis of Si/SiGe/Si double heterojunction band of a novelstructure of PIN electronic modulation
PIN is a common structure of electrical modulation in electro-optic modulator, and the performance of the electro-optic modulator is directly affected by the carrier injection in P...
Field-emission current densities of carbon nanotube under the different electric fields
Field-emission current densities of carbon nanotube under the different electric fields
The field emission current variation law of carbon nanotube in a large electric field range (0-32 V m-1) is analyzed in depth by combining the density functional theory with metal ...
Nanogold and nanosilver hybrid polymer materials
Nanogold and nanosilver hybrid polymer materials
<p>Significant opportunities exist in both the scientific and industrial sectors for the development of new generation hybrid materials. These multifunctional hybrid material...
Analysis of SiC/Si Heterojunction Band Energy and Interface State Characteristics for SiC/Si VDMOS
Analysis of SiC/Si Heterojunction Band Energy and Interface State Characteristics for SiC/Si VDMOS
SiC/Si and GaN/Si heterojunction technology has been widely used in power semiconductor devices, and SiC/Si VDMOS and GaN/Si VDMOS were proposed in our previous paper. Based on exi...
Switching control strategy for an energy storage system based on multi-level logic judgment
Switching control strategy for an energy storage system based on multi-level logic judgment
Energy storage is a new, flexibly adjusting resource with prospects for broad application in power systems with high proportions of renewable energy integration. However, energy st...
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Extending Polymer Flooding Towards High-Temperature and High-Salinity Carbonate Reservoirs
Abstract
Polymer flooding is a mature EOR technique successfully applied in both sandstone and carbonate reservoirs. ADNOC has developed a new EOR roadmap with the o...
Thermal energy storage with tunnels in different subsurface conditions
Thermal energy storage with tunnels in different subsurface conditions
The widespread use of the underground and global climate change impact the urban subsurface temperature. Changes in the subsurface environment can affect the performance of undergr...

