Flexible and Ultrahigh Through‐Plane Thermally‐Conductive Polyethylene/Boron Nitride Nanocomposite Films

Flexible and Ultrahigh Through‐Plane Thermally‐Conductive Polyethylene/Boron Nitride Nanocomposite Films
复制标题

柔性超高透过率平面导热导电聚乙烯/氮化硼纳米复合薄膜

DOI:
10.1002/mame.202100695
复制
发表时间:
2021-11
影响因子:
3.9
通讯作者:
Dan Sun
Dan Sun
中科院分区:
材料科学3区
文献类型:
--
作者:
Ri‐Chao Zhang;Zirui Huang;Meiling Zhong;Dehui Ji;Ai Lu;Quanchao Zhang;Yuanfei Lin;Paul Joseph;Jiali Zhang;Dan Sun

文献摘要

被引文献

相似文献

Polymers with relatively higher thermal conductivity are in great demand for many advanced functional applications that often require thermally conductive as well as flexible materials. However, enhancing the thermal conductivity of polymers, while maintaining their mechanical properties, is still a formidable challenge. Here it is reported on the successful fabrication of polyethylene (PE)/boron nitride nanoplate (BNNP) nanocomposite films, with excellent flexibility and ultrahigh through‐plane thermal conductivity, by a uniaxially hot‐stretching process. Results from this study show that the nanocomposite films withϕv= 6.7 vol% BNNPs, under low stretching ratio (Λ= 5), exhibit a through‐plane thermal conductivity of ≈14.54 W m−1K−1, about 44.4 times higher than the corresponding bulk value for PE (0.32 W m−1K−1), while also having improved the Young's modulus of elasticity. The theoretical analysis also shows that such a dramatic enhancement can be attributed to the formation of a 3D continuous network structure within the nanocomposite films. Thus, these flexible films offer possibilities as passive heat exchange matrices in various advanced applications that often require the materials with higher flexibility, lighter weight, easy/scalable processing attributes, and with a higher thermal conductivity.