Dielectric materials with excellent energy storage capability at elevated temperatures are critical to meet the increasing demand of electrical energy storage and power conditioning at extreme conditions such as hybrid electric vehicles, underground oil industries and aerospace systems. This review study summarises the important aspects and recent advances in the development of nanostructured dielectric materials including ceramics, polymers and polymer composites for high-temperature capacitor applications. The advantages and limitations of current dielectric materials are discussed and analysed. Ongoing research strategies to suppress the conduction loss and optimise the high-temperature capacitive performance of dielectrics have been hig...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
Currently there is a push for low cost, high energy materials with high operating temperatures that ...
The search for new dielectric materials has grown exponentially as more emphasis has been placed on ...
Polymers are the preferred materials for dielectrics in high-energy-density capacitors. The electrif...
Dielectric capacitors with a high operating temperature applied in electric vehicles, aerospace and ...
Polymer film capacitors for energy storage applications at high temperature have shown great potenti...
Dielectric composites boost the family of energy storage and conversion materials as they can take f...
Materials exhibiting high energy/power density are currently needed to meet the growing demand of po...
Polymer dielectrics-based capacitors are indispensable to the development of increasingly complex, m...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
Inclusions of nanosized ceramic particles in a polymer matrix influence the dielectric properties of...
The availability of high-temperature dielectrics is key to develop advanced electronics and power sy...
Fast development of cutting-edge areas including aviation and space, new energy, electrical and elec...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
Polymer dielectrics offer key advantages over their ceramic counterparts such as flexibility, scalab...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
Currently there is a push for low cost, high energy materials with high operating temperatures that ...
The search for new dielectric materials has grown exponentially as more emphasis has been placed on ...
Polymers are the preferred materials for dielectrics in high-energy-density capacitors. The electrif...
Dielectric capacitors with a high operating temperature applied in electric vehicles, aerospace and ...
Polymer film capacitors for energy storage applications at high temperature have shown great potenti...
Dielectric composites boost the family of energy storage and conversion materials as they can take f...
Materials exhibiting high energy/power density are currently needed to meet the growing demand of po...
Polymer dielectrics-based capacitors are indispensable to the development of increasingly complex, m...
Next-generation microelectronics and electrical power systems call for high-energy-density dielectri...
Inclusions of nanosized ceramic particles in a polymer matrix influence the dielectric properties of...
The availability of high-temperature dielectrics is key to develop advanced electronics and power sy...
Fast development of cutting-edge areas including aviation and space, new energy, electrical and elec...
The introduction of inorganic components into a polymer matrix to form polymer composites is an emer...
Polymer dielectrics offer key advantages over their ceramic counterparts such as flexibility, scalab...
International audienceFilm capacitors with high energy storage are becoming particularly important w...
Currently there is a push for low cost, high energy materials with high operating temperatures that ...
The search for new dielectric materials has grown exponentially as more emphasis has been placed on ...