电介质
材料科学
偶极子
带隙
热稳定性
聚合物
放松(心理学)
共轭体系
化学物理
工作(物理)
光电子学
热的
高-κ电介质
高分子化学
化学
有机化学
复合材料
热力学
物理
心理学
社会心理学
作者
Chao Wu,Ajinkya A. Deshmukh,Omer Yassin,Jierui Zhou,Abdullah Alamri,John Vellek,Stuti Shukla,Michael Sotzing,R. Casalini,Gregory A. Sotzing,Yang Cao
标识
DOI:10.1073/pnas.2115367118
摘要
Flexible large bandgap dielectric materials exhibiting ultra-fast charging-discharging rates are key components for electrification under extremely high electric fields. A polyoxafluoronorbornene (m-POFNB) with fused five-membered rings separated by alkenes and flexible single bonds as the backbone, rather than conjugated aromatic structure typically for conventional high-temperature polymers, is designed to achieve simultaneously high thermal stability and large bandgap. In addition, an asymmetrically fluorinated aromatic pendant group extended from the fused bicyclic structure of the backbone imparts m-POFNB with enhanced dipolar relaxation and thus high dielectric constant without sacrificing the bandgap. m-POFNB thereby exhibits an unprecedentedly high discharged energy density of 7.44 J/cm3 and high efficiency at 150 °C. This work points to a strategy to break the paradox of mutually exclusive constraints between bandgap, dielectric constant, and thermal stability in the design of all-organic polymer dielectrics for harsh condition electrifications.
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