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通过增强陶瓷相的连通性在低陶瓷体积分数的钛酸钡-环氧树脂复合材料中获得大幅提高的介电常数。

Obtaining Greatly Improved Dielectric Constant in BaTiO-Epoxy Composites with Low Ceramic Volume Fraction by Enhancing the Connectivity of Ceramic Phase.

作者信息

Cao Meng, Yan Xiao Jian, Li Lei, Wu Shu Ya, Chen Xiang Ming

机构信息

School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

ACS Appl Mater Interfaces. 2022 Feb 9;14(5):7039-7051. doi: 10.1021/acsami.1c25069. Epub 2022 Jan 28.

Abstract

Ceramic-polymer dielectric composites show promising potential as embedded capacitors, whereas it is a great challenge to obtain a high dielectric constant (ε) at a low ceramic volume fraction (). This work demonstrates a strategy for overcoming this challange. By employing a high sintering temperature () and introducing porogen, BaTiO ceramics with both great connectivity and high porosity are obtained, and the composites with improved ε at a low are prepared after curing the epoxy monomer, which is infiltrated into the porous ceramic bodies. For the composite with a of 1300 °C and a of 38.1%, the ε is as high as 466.8 at 1 kHz, which is improved by about nine times compared to the 0-3 counterpart with a higher of 60.8%. Furthermore, the composite exhibits low dielectric loss and good frequency and temperature stability of ε, indicating the great potential for practical applications. Finite element simulation shows that the enhanced connectivity of BaTiO increases the electric field intensity in high-ε BaTiO dramatically and therefore plays a key role in the dielectric response of the composite. This work not only sheds light on the high-ε ceramic-polymer composites but also deepens the understanding on the relationship between their properties and microstructures.

摘要

陶瓷-聚合物介电复合材料作为嵌入式电容器显示出广阔的应用前景,然而,在低陶瓷体积分数下获得高介电常数(ε)是一项巨大的挑战。这项工作展示了一种克服这一挑战的策略。通过采用高烧结温度并引入致孔剂,获得了具有良好连通性和高孔隙率的钛酸钡(BaTiO)陶瓷,在将环氧树脂单体渗入多孔陶瓷体后进行固化,制备出了在低陶瓷体积分数下具有改善的ε的复合材料。对于烧结温度为1300℃且孔隙率为38.1%的复合材料,在1kHz时ε高达466.8,与陶瓷体积分数更高(60.8%)的0-3型复合材料相比提高了约9倍。此外,该复合材料表现出低介电损耗以及良好的ε频率和温度稳定性,表明其在实际应用中具有巨大潜力。有限元模拟表明,BaTiO连通性的增强显著提高了高ε的BaTiO中的电场强度,因此在复合材料的介电响应中起关键作用。这项工作不仅为高ε陶瓷-聚合物复合材料提供了启示,也加深了对其性能与微观结构之间关系的理解。

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