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Flexible Temperature-Invariant Polymer Dielectrics with Large Bandgap

  • Chao Wu
  • , Ajinkya A. Deshmukh
  • , Zongze Li
  • , Lihua Chen
  • , Abdullah Alamri
  • , Yifei Wang
  • , Rampi Ramprasad
  • , Gregory A. Sotzing
  • , Yang Cao
  • University of Connecticut
  • Georgia Institute of Technology

科研成果: 期刊稿件文章同行评审

282 引用 (Scopus)

摘要

Flexible dielectrics operable under simultaneous electric and thermal extremes are critical to advanced electronics for ultrahigh densities and/or harsh conditions. However, conventional high-performance polymer dielectrics generally have conjugated aromatic backbones, leading to limited bandgaps and hence high conduction loss and poor energy densities, especially at elevated temperatures. A polyoxafluoronorbornene is reported, which has a key design feature in that it is a polyolefin consisting of repeating units of fairly rigid fused bicyclic structures and alkenes separated by freely rotating single bonds, endowing it with a large bandgap of ≈5 eV and flexibility, while being temperature-invariantly stable over −160 to 160 °C. At 150 °C, the polyoxafluoronorbornene exhibits an electrical conductivity two orders of magnitude lower than the best commercial high-temperature polymers, and features an unprecedented discharged energy density of 5.7 J cm−3 far outperforming the best reported flexible dielectrics. The design strategy uncovered in this work reveals a hitherto unexplored space for the design of scalable and efficient polymer dielectrics for electrical power and electronic systems under concurrent harsh electrical and thermal conditions.

源语言英语
文章编号2000499
期刊Advanced Materials
32
21
DOI
出版状态已出版 - 1 5月 2020
已对外发布

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