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Enhanced microwave absorption properties of modified Ni@C nanocapsules with accreted N doped C shell on surface

机译:修饰的Ni @ C纳米胶囊表面吸附有N掺杂的C壳,提高了微波吸收性能

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An arc-discharge method together with in-situ self-polymerization method was adopted to synthesize Ni@C/NC nanocapsules. With this method, the Ni@C/NC nanocapsules with enhanced microwave absorption properties were obtained. This enhanced microwave absorption property is due to the modification on Ni@C nanocapsule with accreted N-doped C shell on its surface. The microstructure and microwave absorption property of as-prepared nanocapsules were studied in detail. A reflection loss (RL) below - 20 dB is obtained in the wide frequency range of 4.4-18 GHz of Ni@C/NC nanocapsules, when an appropriate absorber thickness from 1.5 to 5.2 mm is chosen. An optimal RL value - 38.3 dB is observed at 11.7 GHz on Ni@C/NC nanocapsules-paraffin composites with an absorber thickness of 2.4 mm. Moreover, the amplitude of RL values of Ni@C/NC nanocapsules is about 2-3 times as many as that of Ni@C nanocapsules within absorber thickness ranging from 1.5 to 5.2 mm. This result shows that N-doped graphite C accreted on the surface of Ni@C nanocapsules could induce strong dielectric resonance and increase permittivity values of the Ni@C/NC nanocapsules. As a result, microwave absorbing performance of the Ni@C/NC nanocapsules is significantly enhanced.
机译:采用电弧放电法和原位自聚合法合成了Ni @ C / NC纳米胶囊。通过这种方法,获得了具有增强的微波吸收性能的Ni @ C / NC纳米胶囊。这种增强的微波吸收性能是由于在Ni @ C纳米胶囊表面改性了N掺杂的C壳而形成的。详细研究了所制备纳米胶囊的微观结构和微波吸收性能。当选择合适的吸收体厚度为1.5至5.2 mm时,在4.4-18 GHz的Ni @ C / NC纳米胶囊的宽频率范围内,反射损耗(RL)低于-20 dB。在吸收器厚度为2.4 mm的Ni @ C / NC纳米胶囊-石蜡复合材料上,在11.7 GHz处观察到最佳RL值-38.3 dB。而且,Ni @ C / NC纳米胶囊的RL值的幅度是吸收体厚度在1.5至5.2 mm范围内的Ni @ C纳米胶囊的2-3倍。该结果表明,在Ni @ C纳米胶囊的表面上积聚的N掺杂石墨C可引起强介电共振并增加Ni @ C / NC纳米胶囊的介电常数。结果,Ni @ C / NC纳米胶囊的微波吸收性能显着增强。

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