High Temperature Electromagnetic Interference Shielding Of Lightweight And Flexible Zrc/Sic Nanofiber Mats

CHEMICAL ENGINEERING JOURNAL(2021)

引用 55|浏览35
暂无评分
摘要
SiC based materials are ideal candidates for electromagnetic-interference (EMI) shielding application at high temperature. Herein, lightweight and flexible ZrC/SiC hybrid nanofiber mats were successfully fabricated by electrospinning and high temperature pyrolysis with polycarbosilane (PCS) and Zirconium acetylacetone ((Zr(acac)(3)) as precursors. The adding of Zr(acac)(3) makes the PCS solution a lower viscosity and higher conductivity. After pyrolysis, highly conductive ZrC nanoparticles are uniformly distributed in the SiC nanofiber matrix. As a result, the average diameter of ZrC/SiC nanofibers is reduced from 2.6 mu m to 330 nm compared with pure SiC fibers. Meanwhile, the specific BET surface area (S-BET) of ZrC/SiC nanofiber mat is also improved from 51.5 to 131.1 m(2)/g due to the reduced diameter and rough surface morphology. Meanwhile, the electrical conductivity of ZrC/SiC nanofiber mat greatly rises from 1.5 x 10(-6) to 1.3 x 10(-1) S/cm. It is found that 3-layer ZrC/SiC naofiber mats with the total thickness of 1.8 mm achieve the EMI shielding effectiveness (SET) of 18.9 dB. With a low density of 0.06 g/cm(3), the specific shielding effectiveness could be as high as 315 dB center dot cm(3)center dot g(-1). Moreover, the SET value could be further promoted to 20.1 dB at 600 degrees C. Such optimized EMI shielding performance indicates that the ZrC/SiC nanofiber mat could be an excellent lightweight and effective EMI shielding material for high temperature application.
更多
查看译文
关键词
Electromagnetic interference shielding, ZrC/SiC hybrid nanofiber mats, Electrospinning, Lightweight, High temperature
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要