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Microstructure and dielectric properties of biocarbon nanofiber composites

机译:生物碳纳米纤维复合材料的微观结构和介电性能

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摘要

A kind of web-like carbon with interconnected nanoribbons was fabricated using bacterial cellulose pyrolyzed at various temperatures, and the microwave dielectric properties were investigated. Bacterial cellulose was converted into carbonized bacterial cellulose (CBC) with a novel three-dimensional web built of entangled and interconnected cellulose ribbons when the carbonization temperature was below 1,200°C; the web-like structure was destroyed at a temperature of 1,400°C. Composites of CBC impregnated with paraffin wax exhibited high complex permittivity over a frequency range of 2 to 18 GHz, depending on the carbonization temperature. Both real and imaginary parts were the highest for CBC pyrolyzed at 1,200°C. The complex permittivity also strongly depended on CBC loadings. For 7.5 wt.% loading, the real and imaginary permittivities were about 12 and 4.3, respectively, and the minimum reflection loss was -39 dB at 10.9 GHz. For 30 wt.% loading, the real and imaginary permittivities were about 45 and 80, respectively, and the shielding efficiency was more than 24 dB in the measured frequency range and could be up to 39 dB at 18 GHz. The electromagnetic properties were assumed to correlate with both the dielectric relaxation and the novel web-like structure.
机译:利用在不同温度下热解的细菌纤维素,制备了一种具有相互连接的纳米带的网状碳,并研究了其微波介电性能。当碳化温度低于1,200°C时,细菌纤维素将通过缠结且相互连接的纤维素带构成的新型三维纤维网转化为碳化细菌纤维素(CBC)。该网状结构在1400℃的温度下被破坏。取决于碳化温度,用石蜡浸渍的CBC复合材料在2至18 GHz的频率范围内表现出高的复介电常数。在1,200°C下热解的CBC的实部和虚部均最高。复介电常数也强烈依赖于CBC负载。对于7.5 wt。%的负载,实际和虚电容率分别约为12和4.3,在10.9 GHz时最小反射损耗为-39 dB。对于30 wt。%的负载,实际电容率和虚电容率分别约为45和80,屏蔽效率在测得的频率范围内大于24 dB,在18 GHz时可达39 dB。假定电磁特性与介电弛豫和新颖的网状结构相关。

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