4.3 Review

Research progress of low dielectric constant polymer materials

期刊

JOURNAL OF POLYMER ENGINEERING
卷 42, 期 8, 页码 677-687

出版社

WALTER DE GRUYTER GMBH
DOI: 10.1515/polyeng-2021-0338

关键词

fluorine doping; intrinsic; low dielectric constant; micropore; polymer

资金

  1. Open Fund of Key Laboratory of Rubber Plastics, Ministry of Education/Shandong Provincial Key Laboratory of Rubber-plastics [KF2020002]
  2. National Key Laboratory on Ship Vibration and Noise [6142204200608]
  3. Team Innovation Foundation of Hubei province [T201935]
  4. Opening Project of Key Laboratory of Optoelectronic Chemical Materials and Devices of Ministry of Education, Jianghan University [JDGD-202001]
  5. National Natural Science Foundation of China [51803103]

向作者/读者索取更多资源

The advent of the high frequency communication era has posed new challenges for the further development of dielectric polymer materials. Efficient signal transmission is critical in the field of communication, and using dielectric materials with low dielectric constant can reduce signal delay and improve signal fidelity. This paper primarily discusses the research progress and future trends in intrinsic low dielectric polymers, fluorine doped low dielectric polymers, and microporous low dielectric polymers.
The advent of high frequency communication era presents new challenges for further development of dielectric polymer materials. In the field of communication, efficient signal transmission is critical. The lower the dielectric constant of the dielectric material used, the lower the signal delay and the higher the signal fidelity. The preparation of polymer materials with low dielectric constant or reduce the dielectric constant of polymer materials becomes a key research topic. Summarizing past progress and providing perspective, this paper primarily discusses the intrinsic low dielectric polymers, fluorine doped low dielectric polymers, and microporous low dielectric polymers, while predicting the research trend of low dielectric materials.

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