材料科学
纳米纤维
陶瓷
退火(玻璃)
复合材料
微观结构
微波食品加热
无定形固体
反射损耗
电介质
吸收(声学)
介电常数
复合数
光电子学
物理
有机化学
化学
量子力学
作者
Qingqing Chen,Daxin Li,Xingqi Liao,Zhihua Yang,Dechang Jia,Yu Zhou,Ralf Riedel
标识
DOI:10.1021/acsami.1c07912
摘要
Lightweight SiBCN ceramic nanofibers were prepared by a combination of electrostatic spinning and high-temperature annealing techniques, showing tunable electromagnetic wave absorption. By controlling the annealing temperature, the nanoscale architectures and atomic bonding structures of as-prepared nanofibers could be well regulated. The resulting SiBCN nanofibers ∼300 nm in diameter, which were composed of an amorphous matrix, β-SiC, and free carbon nanocrystals, were defect-free after annealing at 1600 °C. SiBCN nanofibers annealed at 1600 °C exhibited good microwave absorption, obtaining a minimum reflection coefficient of −56.9 dB at 10.56 GHz, a sample thickness of 2.6 mm with a maximum effective absorption bandwidth of 3.45 GHz, and a maximum dielectric constant of 0.44. Owing to the optimized A + B + C microstructure, SiBCN ceramic nanofibers with satisfying microwave absorption properties endowed the nanofibers with the potential to be used as lightweight, ultrastrong radar wave absorbers applied in military and the commercial market.
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