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Synthesis, characterization and microwave absorption of carbon-coated Cu nanocapsules

机译:碳包覆铜纳米胶囊的合成,表征和微波吸收

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摘要

The microstructure and microwave absorption of carbon-coated Cu nanocapsules have been investigated. Carbon-coated Cu nanocapsules have been synthesized by an arc-discharge method. The paraffin-Cu/C nanocapsules composite shows excellent electromagnetic (EM) absorption properties. An optimal reflection loss (RL) value of -40.0 dB is reached at 10.52 GHz for a layer 1.9 mm thickness. RL exceeding -20 dB can be realized in any interval within the 1-18 GHz range by choosing an appropriate thickness of the absorbent layer between 1.1 and 10.0 mm. Theoretical simulation for the microwave absorption using the transmission line theory agrees reasonably well with the experimental results. The EM-wave absorption properties of nanocapsules materials are illustrated by means of an absorption-tube-map. The carbon-coated Cu nanocapsule is an attractive candidate for EM-wave absorption, which significantly enriches the family of EM-wave nanoabsorbents.
机译:研究了碳包覆铜纳米胶囊的微观结构和微波吸收。已经通过电弧放电法合成了碳包覆的铜纳米胶囊。石蜡-Cu / C纳米胶囊复合材料具有出色的电磁(EM)吸收性能。对于厚度为1.9 mm的层,在10.52 GHz时达到了-40.0 dB的最佳反射损耗(RL)值。通过在1.1至10.0 mm之间选择合适的吸收层厚度,可以在1-18 GHz范围内的任何间隔中实现超过-20 dB的RL。利用传输线理论对微波吸收的理论模拟与实验结果吻合得很好。纳米胶囊材料的电磁波吸收特性通过吸收管图来说明。碳包覆的Cu纳米胶囊是EM波吸收的诱人候选物,它极大地丰富了EM波纳米吸收剂的种类。

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