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Large scale synthesis of superparamagnetic face-centered Cubic Co/C nanocapsules by a facile hydrothermal method and their microwave absorbing properties

机译:简便的水热法大规模合成超顺磁面心立方Co / C纳米胶囊及其微波吸收性能

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摘要

A large scale direct hydrothermal method has been used to prepare face-centered cubic (FCC) Co/C nanocapsules with a core of FCC-Co nanoparticles and a shell of amorphous C. The size distribution is 5-20 nm. The TB of FCC-Co/C nanocapsules is determined as 85 K, indicating that FCC-Co/C nanocapsules are superparamagnetic at 300 K. For FCC-Co/C nanocapsules-paraffin composite, an optimal reflection losbs (RL) of-33.4 dB is observed at 9.6 GHz for the 2.6 mm thick layer. RL values exceeding-20 dB in the 7.4-15 GHz range are obtained by choosing an appropriate absorption-layer thickness between 1.7 and 3.3 mm. The good microwave absorbing properties of FCC-Co/C nanocapsules is considered to result from the excellent synergetic effect of the multi-dielectric relaxation loss and the multi-magnetic resonance loss. Quantitative calculation demonstrated that not only RL peak position but also the number of the peaks are determined by the quarter-wavelength cancellation model.
机译:已使用大规模直接水热法制备具有FCC-Co纳米颗粒核和无定形C壳的面心立方(FCC)Co / C纳米胶囊。尺寸分布为5-20 nm。 FCC-Co / C纳米胶囊的TB确定为85 K,表明FCC-Co / C纳米胶囊在300 K下是超顺磁性的。对于FCC-Co / C纳米胶囊-石蜡复合物,最佳反射损耗(RL)为-33.4对于2.6 mm厚的层,在9.6 GHz处观察到dB。通过在1.7至3.3 mm之间选择合适的吸收层厚度,可获得7.4-15 GHz范围内超过20 dB的RL值。 FCC-Co / C纳米胶囊具有良好的微波吸收性能,被认为是由于多介电弛豫损失和多磁共振损失的良好协同作用所致。定量计算表明,不仅四分之一波长抵消模型确定了RL峰位置,而且确定了峰数。

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