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具有优异介电性能、高击穿强度和高储能密度的钛酸钡/多壁碳纳米管/聚偏氟乙烯三元介电复合材料

BaTiO/MWNTs/Polyvinylidene Fluoride Ternary Dielectric Composites with Excellent Dielectric Property, High Breakdown Strength, and High-Energy Storage Density.

作者信息

Zhao Mingzhou, Fu Qiong, Hou Yafei, Luo Laihui, Li Weiping

机构信息

Department of Microelectronic Science and Engineering, Faculty of Science, Ningbo University, Ningbo 315211, China.

Department of Foundation, Ningbo City College of Vocational & Technology, Ningbo 315100, China.

出版信息

ACS Omega. 2019 Jan 11;4(1):1000-1006. doi: 10.1021/acsomega.8b02504. eCollection 2019 Jan 31.

Abstract

To improve the dielectric performance of polyvinylidene fluoride (PVDF), BaTiO/MWNTs/PVDF ternary composites were prepared by the solution casting method. The percolation threshold (fraction of MWNTs) has dropped greatly below 0.4 vol %, with the enhancement of dielectric constant and breakdown field. For the BaTiO/MWNTs/PVDF (11.5/0.35/88.15) composite, the dielectric constant is 59, the loss is below 0.055, and the maximum operating electric field is 324 MV/m, so the discharged energy density can be of up to 10.3 J/cm with the efficiency of above 77.2%. The reason of improvement was revealed by the scanning electron microscope images and the X-ray diffraction data. It is found that uniform distribution of filler in the composites and the increase of the β phase of polymers result in the enhancement of polarization and improvement of dielectric constant of PVDF. The third-phase spherical inorganic particles prevent the formation of conductive networks and improve the uniformity of local electric field, so the breakdown strength of composites can be enhanced greatly. Here, this paper provides a method to get the composites with high energy storage density for supercapacitors.

摘要

为提高聚偏氟乙烯(PVDF)的介电性能,采用溶液浇铸法制备了BaTiO/MWNTs/PVDF三元复合材料。随着介电常数和击穿场强的提高,渗流阈值(MWNTs的含量)大幅降至0.4体积%以下。对于BaTiO/MWNTs/PVDF(11.5/0.35/88.15)复合材料,介电常数为59,损耗低于0.055,最大工作电场为324 MV/m,因此放电能量密度可达10.3 J/cm,效率高于77.2%。通过扫描电子显微镜图像和X射线衍射数据揭示了性能提高的原因。研究发现,填料在复合材料中的均匀分布以及聚合物β相的增加导致PVDF极化增强和介电常数提高。第三相球形无机颗粒可防止导电网络的形成并改善局部电场的均匀性,因此可大幅提高复合材料的击穿强度。本文提供了一种制备用于超级电容器的具有高储能密度复合材料的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1e8/6648649/0495f37b6168/ao-2018-02504x_0001.jpg

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