Liu Yang, Lin Yen-Ting, Haibibu Aziguli, Xu Wenhan, Zhou Yao, Li Li, Kim Seong H, Wang Qing
Department of Materials Science and Engineering The Pennsylvania State University University Park PA 16802 USA.
Department of Chemical Engineering The Pennsylvania State University University Park PA 16802 USA.
Small Sci. 2021 Feb 15;1(3):2000061. doi: 10.1002/smsc.202000061. eCollection 2021 Mar.
Relaxor ferroelectric polymers exhibit both high dielectric constants and low remnant polarization and thus deliver much higher energy densities and greater charge-discharge efficiencies than normal ferroelectrics for capacitive energy storage applications. Herein, dielectric energy storage behavior of several newly discovered relaxor ferroelectric polymers is studied from a molecular perspective. It is observed that the homopolymers exhibit very slim polarization-electric field loops and the highest charge-discharge efficiencies among ferroelectric polymers, which are attributed to the highly disordered chain conformation as evidenced from the scanning probe microscopy results. Based on the findings on the relaxor homopolymers, the benchmark relaxor ferroelectric terpolymers is revisited and insights into their outstanding capacitive performance are provided. Moreover, it is found that the disordered chain conformation in relaxor ferroelectric polymers remains as the ground state at varied temperatures and applied electric fields, which is in stark contrast to relaxor perovskites whose ground state is strongly dependent on temperatures and external electric fields. The discovery of the absence of thermal- and field-induced phase transition in relaxor ferroelectric polymers makes this class of ferroelectric materials more attractive for advanced electronic and energy applications.
弛豫铁电聚合物具有高介电常数和低剩余极化,因此在电容式储能应用中比普通铁电体具有更高的能量密度和更大的充放电效率。在此,从分子角度研究了几种新发现的弛豫铁电聚合物的介电能存储行为。观察到,均聚物呈现出非常窄的极化-电场回线,并且在铁电聚合物中具有最高的充放电效率,这归因于扫描探针显微镜结果所证明的高度无序的链构象。基于对弛豫均聚物的研究结果,重新审视了基准弛豫铁电三元共聚物,并对其出色的电容性能提供了见解。此外,发现弛豫铁电聚合物中无序的链构象在不同温度和外加电场下都保持为基态,这与弛豫钙钛矿形成鲜明对比,后者的基态强烈依赖于温度和外部电场。弛豫铁电聚合物中不存在热致和场致相变这一发现,使得这类铁电材料在先进电子和能源应用中更具吸引力。