结构材料
材料科学
陶瓷
吸收(声学)
电磁辐射
复合材料
光学
物理
作者
Junjie Qian,Dandan Ma,Xiaoling Zhou,Huoming Liao,Q. Shan,Shaohua Wang,Yongqing Wang,Xiaojun Zeng
标识
DOI:10.26599/jac.2024.9220944
摘要
SiOC-based ceramics are considered promising electromagnetic wave-absorbing materials because of their lightweight, high-temperature resistance, and heat insulation properties. Herein, SiOC@C ceramic nanospheres were prepared using a liquid phase method combined with the polymer-derived ceramics (PDCs) method, followed by heat treatment in N2 and Ar atmospheres at different temperatures. The morphology, microstructure, phase composition, and electromagnetic wave absorption performance of the SiOC@C ceramic nanospheres were investigated in detail. The SiOC@C ceramic nanospheres obtained in the Ar atmosphere showed an RLmin of -67.03 dB; whereas the SiOC@C ceramic nanospheres obtained in the N2 atmosphere exhibited an RLmin value of -63.76 dB. The outstanding electromagnetic wave absorption performance of the SiOC@C ceramic nanospheres was attributed to the synergistic effect between conductive loss, interfacial/defect polarization loss, multiple reflections and scattering. Therefore, this research provides valuable insights into the design and fabrication of SiOC ceramic-based electromagnetic wave absorbers.
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