College of Chemistry, Jilin University, Changchun, Jilin, 130012, China.
Department of Materials Science and Engineering, The Pennsylvania State University, State College, Pennsylvania, 16802, USA.
Macromol Rapid Commun. 2024 Apr;45(8):e2300699. doi: 10.1002/marc.202300699. Epub 2024 Jan 18.
Polymer dielectrics with high dielectric constant are urgently demanded for potential electrical and pulsed power applications. The design of polymers with side chains containing dipolar groups is considered an effective method for preparing materials with a high dielectric constant and low loss. This study synthesizes and comprehensively compare the dielectric properties of novel polyimides with side chains containing urea (BU-PI), carbamate (BC-PI), and sulfonyl (BS-PI) functional groups. The novel polyimides exhibit relatively high dielectric constant and low dielectric loss values due to the enhanced orientational polarization and suppressed dipole-dipole interactions of dipolar groups. In particular, BU-PI containing urea pendant groups presents the highest dielectric constant of 6.14 and reasonably low dielectric loss value of 0.0097. The strong γ transitions with low activation energies derived from dielectric spectroscopy measurements have been further evaluated to demonstrate the enhanced free rotational motion of urea pendant dipoles. In energy storage applications, BU-PI achieves a discharged energy density of 6.92 J cm and a charge-discharge efficiency above 83% at 500 MV m. This study demonstrates that urea group, as dipolar pendant group, can provide polymers with better dielectric properties than the most commonly used sulfonyl groups.
具有高介电常数的聚合物电介质在潜在的电气和脉冲功率应用中是急需的。设计具有侧链含偶极基团的聚合物被认为是制备具有高介电常数和低损耗的材料的有效方法。本研究合成并综合比较了含有脲基(BU-PI)、氨基甲酸酯(BC-PI)和砜基(BS-PI)官能团的新型聚酰亚胺的介电性能。由于偶极基团的取向极化增强和偶极-偶极相互作用抑制,新型聚酰亚胺表现出相对较高的介电常数和较低的介电损耗值。特别是含有脲基侧基的 BU-PI 呈现出最高的介电常数 6.14 和合理低的介电损耗值 0.0097。从介电光谱测量得出的具有低活化能的强 γ 转变进一步评估了脲基侧基的自由旋转运动的增强。在储能应用中,BU-PI 在 500 MV m 下实现了 6.92 J cm 的放电能量密度和高于 83%的充放电效率。本研究表明,脲基作为偶极侧基,可以为聚合物提供比最常用的砜基更好的介电性能。