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电子/空穴注入对聚合物电介质储能性能的影响研究

Study on the Effect of Electron/Hole Injection on the Energy-Storage Properties of Polymer Dielectrics.

作者信息

Liu Guang, Chen Yuhao, Cui Yang, Shen Lifang, Wu Taiquan, Chen Chen, Luo Yunxia, Yan Shubin

机构信息

Nanxun Innovation Institute, Zhejiang University of Water Resources and Electric Power, Hangzhou 310018, China.

School of Electrical Engineering, Zhejiang University of Water Resources and Electric Power, Hangzhou 310018, China.

出版信息

Polymers (Basel). 2024 Sep 28;16(19):2750. doi: 10.3390/polym16192750.

Abstract

As a critical component of electrostatic capacitors, the polymer dielectric directly affects the performance of the capacitor. In this work, Polycarbonate (PC)/Polyvinylidene fluoride (PVDF) asymmetric bilayer polymer dielectrics were prepared, and the influence of different polymer materials' barrier characteristics on various electrical properties of composite dielectrics was studied by changing the direction of applied electric fields. Research has found that the dielectric constant of a composite dielectric is between PVDF and PC (approximately 4.8 at 10 Hz) and is independent of the relative position of PVDF and PC in the dielectric. However, the relative position of PC and PVDF has a significant impact on the energy-storage characteristics of composite dielectrics. When PVDF comes into contact with the negative electrode, even though PC has a higher hole barrier, the composite dielectric can only withstand a maximum electric-field strength of 400 MV/m, which is much lower than the maximum electric-field strength that pure PC can withstand (520 MV/m), and it only achieves an energy-storage density of 3.7 J/cm. When the PC comes into contact with the negative electrode, the high electron barrier of the PC effectively suppresses the injection of electrons at the electrode. It can withstand the same electric-field strength as PC (520 MV/m), achieving an energy-storage density of 5.48 J/cm, which is 1.46 times that of pure PC and 1.64 times that of PVDF. This experiment effectively combined the advantages of PC and PVDF by utilizing the electron/hole barrier of polymer materials to obtain a fully organic dielectric with excellent energy-storage performance.

摘要

作为静电电容器的关键组成部分,聚合物电介质直接影响电容器的性能。在本工作中,制备了聚碳酸酯(PC)/聚偏氟乙烯(PVDF)不对称双层聚合物电介质,并通过改变外加电场方向研究了不同聚合物材料的阻挡特性对复合电介质各种电学性能的影响。研究发现,复合电介质的介电常数介于PVDF和PC之间(10 Hz时约为4.8),且与PVDF和PC在电介质中的相对位置无关。然而,PC和PVDF的相对位置对复合电介质的储能特性有显著影响。当PVDF与负极接触时,尽管PC具有更高的空穴阻挡能力,但复合电介质只能承受400 MV/m的最大电场强度,远低于纯PC所能承受的最大电场强度(520 MV/m),其储能密度仅为3.7 J/cm³。当PC与负极接触时,PC的高电子阻挡能力有效抑制了电极处电子的注入。它能承受与PC相同的电场强度(520 MV/m),实现了5.48 J/cm³的储能密度,是纯PC的1.46倍,PVDF的1.64倍。本实验通过利用聚合物材料的电子/空穴阻挡特性,有效结合了PC和PVDF的优点,获得了具有优异储能性能的全有机电介质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a03/11478430/9219310a6a78/polymers-16-02750-g001.jpg

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