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通过热处理改变晶相提高聚甲基丙烯酸甲酯/聚偏氟乙烯复合材料的储能性能

Enhancement of Energy Storage Performance of PMMA/PVDF Composites by Changing the Crystalline Phase through Heat Treatment.

作者信息

Zhang Changhai, Tong Xu, Liu Zeyang, Zhang Yue, Zhang Tiandong, Tang Chao, Liu Xianli, Chi Qingguo

机构信息

Key Laboratory of Engineering Dielectrics and Its Application, Ministry of Education, Harbin University of Science and Technology, Harbin 150080, China.

School of Electrical and Electronic Engineering, Harbin University of Science and Technology, Harbin 150080, China.

出版信息

Polymers (Basel). 2023 May 28;15(11):2486. doi: 10.3390/polym15112486.

Abstract

In today's contemporary civilization, there is a growing need for clean energy focused on preserving the environment; thus, dielectric capacitors are crucial equipment in energy conversion. On the other hand, the energy storage performance of commercial BOPP (Biaxially Oriented Polypropylene) dielectric capacitors is relatively poor; hence, enhancing their performance has drawn the attention of an increasing number of researchers. This study used heat treatment to boost the performance of the composite made from PMAA and PVDF, combined in various ratios with good compatibility. The impacts of varying percentages of PMMA-doped PMMA/PVDF mixes and heat treatment at varying temperatures were systematically explored for their influence on the attributes of the blends. After some time, the blended composite's breakdown strength improves from 389 kV/mm to 729.42 kV/mm at a processing temperature of 120 °C. Consequently, the energy storage density is 21.12 J/cm, and the discharge efficiency is 64.8%. The performance has been significantly enhanced compared to PVDF in its purest state. This work offers a helpful technique for designing polymers that perform well as energy storage materials.

摘要

在当今的现代文明中,对专注于保护环境的清洁能源的需求日益增长;因此,介电电容器是能量转换中的关键设备。另一方面,商业BOPP(双向拉伸聚丙烯)介电电容器的储能性能相对较差;因此,提高其性能已引起越来越多研究人员的关注。本研究采用热处理来提高由PMAA和PVDF制成的复合材料的性能,它们以各种比例混合且具有良好的相容性。系统地研究了不同百分比的PMMA掺杂的PMMA/PVDF混合物以及不同温度下的热处理对共混物性能的影响。一段时间后,在120°C的加工温度下,共混复合材料的击穿强度从389 kV/mm提高到729.42 kV/mm。因此,储能密度为21.12 J/cm,放电效率为64.8%。与最纯状态的PVDF相比,性能有了显著提高。这项工作为设计作为储能材料表现良好的聚合物提供了一种有用的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caf0/10255311/b6dbcfdeed2b/polymers-15-02486-g001.jpg

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