4.7 Article

Recent progress in thermally conductive polymer/boron nitride composites by constructing three-dimensional networks

Journal

COMPOSITES COMMUNICATIONS
Volume 24, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.coco.2021.100650

Keywords

Polymer; boron nitride composites; Thermal conductivity; Three-dimensional networks; Fabrication methods

Funding

  1. Shanghai Sailing Program in China [19YF1450500]
  2. Guangdong Province Key Field R&D Program Project [2020B010190004]
  3. Youth Innovation Promotion Association of the Chinese Academy of Sciences [2019354]
  4. Shenzhen Basic Research Plan [JCYJ20180302145752800]
  5. Shenzhen, the Science, Technology and Fundamental Research and Discipline Layout project [JCYJ20170818153048647]

Ask authors/readers for more resources

Constructing three-dimensional networks is an effective method to improve the thermal conductivity of high thermally conductive polymer/boron nitride composites.
As one of the critical components in thermal management system, high thermally conductive polymer composites is the key factor affecting the heat dissipation of electronic devices. During the past few decades, considerable researches have been done to enhance the thermal conductivity of polymer composites by adding fillers with high thermal conductivity, such as metals, carbon-based materials and ceramics. Boron nitride (BN) has been considered as an ideal thermally conductive filler for polymer composites. However, the large interfacial thermal resistance at the filler-matrix interfaces and the filler-filler interfaces has greatly hampered the heat conduction, resulting in the limited improvement in thermal conductivity. In this mini review, we attempt to present recent progress in fabricating high thermally conductive polymer/boron nitride composites by constructing three-dimensional networks. We started from introducing the thermal conduction mechanism in polymer compos-ites, and then briefly discussed the factors influencing the thermal conductivity of polymer composites, followed by presenting different fabrication methods of constructing three-dimensional networks in polymer/boron nitride composites to increase the thermal conductivity. We hope this mini review would provide some beneficial inspiration for improving the thermal conductivity of polymer composites.

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