2022
DOI: 10.1021/acsaem.1c04075
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Interesting Influence of Different Inorganic Particles on the Energy Storage Performance of a Polyethersulfone-Based Dielectric Composite

Abstract: At present, dielectric capacitors have revealed large potential in the field of dielectric energy storage thanks to their advantages such as easy processing, flexibility, and long service life. Currently, a variety of methods have been proposed to prepare composite dielectrics with excellent comprehensive performance, which have the characteristics of great insulation strength, good flexibility, excellent efficiency, and large energy storage density. In this research, three composite dielectrics such as BT/PES… Show more

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Cited by 18 publications
(9 citation statements)
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References 58 publications
(78 reference statements)
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“…We compared the dielectric energy storage capacity values that we obtained with values in the literature. As Figure shows, achieving high U d values with low fractions of fillers is challengingfiller contents below 3 wt % usually result in U d below 7 J/cm 3 . However, in this work, composites containing just 1 wt% RGO@BTO nanosheets have been seen to achieve an U d of 8.25 J/cm 3 .…”
Section: Resultsmentioning
confidence: 99%
“…We compared the dielectric energy storage capacity values that we obtained with values in the literature. As Figure shows, achieving high U d values with low fractions of fillers is challengingfiller contents below 3 wt % usually result in U d below 7 J/cm 3 . However, in this work, composites containing just 1 wt% RGO@BTO nanosheets have been seen to achieve an U d of 8.25 J/cm 3 .…”
Section: Resultsmentioning
confidence: 99%
“…nanocomposites with different nanofillers was also studied through finite element simulation. [5,89,90]…”
Section: Titanium Dioxide (Tio 2 )mentioning
confidence: 99%
“…The reduction of device size means an increase in power density, so the material should also have a high thermal conductivity to improve the thermal management efficiency of the device . Even though traditional ceramics possess high dielectric constants, the brittleness and high density of ceramics limit their applications. , In recent years, polymer-based composite substrates, which possess both excellent dielectric properties of ceramics and good mechanical properties of the polymer, have received extensive attention. The most common composite materials are 0–3 model composites, which are defined as zero-dimensional ceramic particles randomly distributed in the three-dimensional polymer matrix.…”
Section: Introductionmentioning
confidence: 99%