Materials that have high dielectric constants, high energy densities and minimum dielectric losses are highly desirable for use in capacitor devices. In this sense, polymers and polymer blends have several advantages over inorganic and composite materials, such as their flexibilities, high breakdown strengths, and low dielectric losses. Moreover, the dielectric performance of a polymer depends strongly on its electronic, atomic, dipolar, ionic, and interfacial polarizations. For these reasons, chemical modification and the introduction of specific functional groups (e.g., F, CN and R−S(=O)2−R´) would improve the dielectric properties, e.g., by varying the dipolar polarization. These functional groups have been demonstrated to have large dip...
Polymer dielectrics-based capacitors are indispensable to the development of increasingly complex, m...
Military and commercial users require next-generation polymer dielectric materials for pulse power a...
Current development of advanced power electronics for electric vehicles demands high temperature, hi...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
In this work, polymethacrylates containing sulfonyl and nitrile functional groups were successfully ...
Polymer dielectrics having high dielectric constant, high temperature capability, and low loss are a...
This work introduces, for the first time, the dipolar glass copolymer concept as a new strategy to d...
Dipolar glass (DG) polymers, which utilize sub-<i>T</i><sub>g</sub> orientational polarization (<i>T...
In this report, a dipolar glass polymer, poly(2-(methylsulfonyl)ethyl methacrylate) (PMSEMA), was...
The availability of high-temperature dielectrics is key to develop advanced electronics and power sy...
The state-of-the-art in high voltage and high energy density capacitors is dominated by biaxially or...
Polymer dielectrics with high energy density are essential elements to fulfill the future needs on p...
The rapid implementation and improvement of renewable energy technologies require advanced dielectri...
Polymer dielectrics-based capacitors are indispensable to the development of increasingly complex, m...
Military and commercial users require next-generation polymer dielectric materials for pulse power a...
Current development of advanced power electronics for electric vehicles demands high temperature, hi...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
Materials that have high dielectric constants, high energy densities and minimum dielectric losses a...
In this work, polymethacrylates containing sulfonyl and nitrile functional groups were successfully ...
Polymer dielectrics having high dielectric constant, high temperature capability, and low loss are a...
This work introduces, for the first time, the dipolar glass copolymer concept as a new strategy to d...
Dipolar glass (DG) polymers, which utilize sub-<i>T</i><sub>g</sub> orientational polarization (<i>T...
In this report, a dipolar glass polymer, poly(2-(methylsulfonyl)ethyl methacrylate) (PMSEMA), was...
The availability of high-temperature dielectrics is key to develop advanced electronics and power sy...
The state-of-the-art in high voltage and high energy density capacitors is dominated by biaxially or...
Polymer dielectrics with high energy density are essential elements to fulfill the future needs on p...
The rapid implementation and improvement of renewable energy technologies require advanced dielectri...
Polymer dielectrics-based capacitors are indispensable to the development of increasingly complex, m...
Military and commercial users require next-generation polymer dielectric materials for pulse power a...
Current development of advanced power electronics for electric vehicles demands high temperature, hi...