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Excellent Energy Storage Performance in Epoxy Resin Dielectric Polymer Films by a Facile Hot−Pressing Method

Polymers 2023 11 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Kaixin Song, Zhe Pan, Bin Zhang Minmin Mao, Bin Zhang Zhongyu Li, Bin Zhang Bin Zhang Bin Zhang Zhongyu Li, Kaixin Song, Bin Zhang Bin Zhang Bin Zhang Haifeng Li, Zhu Mao, Dawei Wang, Bin Zhang

Summary

This paper is not about microplastics; it describes the fabrication and optimisation of epoxy resin polymer films for dielectric energy storage applications in electronics.

Epoxy resin (EP), as a kind of dielectric polymer, exhibits the advantages of low-curing shrinkage, high-insulating properties, and good thermal/chemical stability, which is widely used in electronic and electrical industry. However, the complicated preparation process of EP has limited their practical applications for energy storage. In this manuscript, bisphenol F epoxy resin (EPF) was successfully fabricated into polymer films with a thickness of 10~15 μm by a facile hot-pressing method. It was found that the curing degree of EPF was significantly affected by changing the ratio of EP monomer/curing agent, which led to the improvement in breakdown strength and energy storage performance. In particular, a high discharged energy density (<i>U<sub>d</sub></i>) of 6.5 J·cm<sup>-3</sup> and efficiency (<i>η</i>) of 86% under an electric field of 600 MV·m<sup>-1</sup> were obtained for the EPF film with an EP monomer/curing agent ratio of 1:1.5 by hot pressing at 130 °C, which indicates that the hot-pressing method could be facilely employed to produce high-quality EP films with excellent energy storage performance for pulse power capacitors.

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