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同时具备超高能量密度和低损耗的聚合物电介质

Polymer Dielectrics with Simultaneous Ultrahigh Energy Density and Low Loss.

作者信息

Zhang Min, Li Bo, Wang Jian-Jun, Huang Hou-Bing, Zhang Lin, Chen Long-Qing

机构信息

Department of Materials Science and Engineering, The Pennsylvania State University, University Park, PA, 16802, USA.

PolyK Technologies, State College, PA, 16803, USA.

出版信息

Adv Mater. 2021 Jun;33(22):e2008198. doi: 10.1002/adma.202008198. Epub 2021 Apr 20.

Abstract

Polymer dielectrics are highly desirable in capacitor applications due to their low cost, high breakdown strength, and unique self-healing capability. However, existing polymer dielectrics suffer from either a low energy density or a high dielectric loss, thereby hindering the development of compact, efficient, and reliable power electronics. Here, a novel type of polymer dielectrics simultaneously exhibiting an extraordinarily high recoverable energy density of 35 J cm and a low dielectric loss is reported. It is synthesized by grafting zwitterions onto the short side chains of a poly(4-methyl-1-pentene) (PMP)-based copolymer, which increases its dielectric constant from ≈2.2 to ≈5.2 and significantly enhances its breakdown strength from ≈700 MV m to ≈1300 MV m while maintaining its low dielectric loss of <0.002 and high charge-discharge efficiency of >90%. Based on a combination of the phase-field method description of mesoscale structures, Maxwell equations, and theoretical analysis, it is demonstrated that the outstanding combination of high energy density and low dielectric loss of zwitterions-grafted copolymers is attributed to the covalent-bonding restricted ion polarization and the strong charge trapping by the zwitterions. This work represents a new strategy in polymer dielectrics for achieving simultaneous high energy density and low dielectric loss.

摘要

聚合物电介质因其低成本、高击穿强度和独特的自愈能力,在电容器应用中备受青睐。然而,现有的聚合物电介质存在能量密度低或介电损耗高的问题,从而阻碍了紧凑、高效和可靠的电力电子设备的发展。在此,报道了一种新型聚合物电介质,其同时展现出高达35 J/cm³的可恢复能量密度和低介电损耗。它是通过将两性离子接枝到聚(4-甲基-1-戊烯)(PMP)基共聚物的短侧链上合成的,这使其介电常数从约2.2提高到约5.2,并将其击穿强度从约700 MV/m显著提高到约1300 MV/m,同时保持其<0.002的低介电损耗和>90%的高充放电效率。基于介观结构的相场法描述、麦克斯韦方程和理论分析相结合,证明两性离子接枝共聚物的高能量密度和低介电损耗的出色组合归因于共价键限制的离子极化和两性离子的强电荷俘获。这项工作代表了聚合物电介质中实现同时高能量密度和低介电损耗的一种新策略。

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