Wang Peng, Yao Lingmin, Pan Zhongbin, Shi Songhan, Yu Jinhong, Zhou Yao, Liu Yang, Liu Jinjun, Chi Qingguo, Zhai Jiwei, Wang Qing
School of Materials Science and Chemical Engineering, Ningbo University, Ningbo, Zhejiang, 315211, China.
School of Materials Science & Engineering, Tongji University, Shanghai, 201804, China.
Adv Mater. 2021 Oct;33(42):e2103338. doi: 10.1002/adma.202103338. Epub 2021 Sep 3.
To reach the full potential of polymer dielectrics in advanced electronics and electrified transportation, it calls for efficient operation of high-energy-density dielectric polymers under high voltages over a wide temperature range. Here, the polymer composites consisting of the boron nitride nanosheet/polyetherimide and TiO nanorod arrays/polyetherimide layers are reported. The layered composite exhibits a much higher dielectric constant than the current high-temperature dielectric polymers and composites, while simultaneously retaining low dielectric loss at elevated temperatures and high applied fields. Consequently, the layered polymer composite presents much improved capacitive performance than the current dielectric polymers and composites over a temperature range of 25-150 °C. Moreover, the excellent capacitive performance of the layered composite is achieved at an applied field that is about 40% lower than the typical field strength of the current polymer composites with the discharged energy densities of >3 J cm at 150 °C. Remarkable cyclability and dielectric stability are established in the layered polymer nanocomposites. This work addresses the current challenge in the enhancement of the energy densities of high-temperature dielectric polymers and demonstrates an efficient route to dielectric polymeric materials with high energy densities and low loss over a broad temperature range.
为了充分发挥聚合物电介质在先进电子和电动交通领域的潜力,需要高能量密度介电聚合物在宽温度范围内的高电压下高效运行。在此,报道了由氮化硼纳米片/聚醚酰亚胺和TiO纳米棒阵列/聚醚酰亚胺层组成的聚合物复合材料。这种层状复合材料表现出比目前的高温介电聚合物和复合材料更高的介电常数,同时在高温和高外加电场下保持低介电损耗。因此,在25至150°C的温度范围内,层状聚合物复合材料的电容性能比目前的介电聚合物和复合材料有了很大改善。此外,层状复合材料在比目前聚合物复合材料典型场强低约40%的外加电场下实现了优异的电容性能,在150°C时放电能量密度>3 J/cm³。层状聚合物纳米复合材料具有显著的循环稳定性和介电稳定性。这项工作解决了当前高温介电聚合物能量密度提升方面的挑战,并展示了一条在宽温度范围内获得高能量密度和低损耗介电聚合物材料的有效途径。