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首页> 外文期刊>Journal of nanomaterials >Preparation and Study of Electromagnetic Interference Shielding Materials Comprised of Ni-Co Coated on Web-Like Biocarbon Nanofibers via Electroless Deposition
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Preparation and Study of Electromagnetic Interference Shielding Materials Comprised of Ni-Co Coated on Web-Like Biocarbon Nanofibers via Electroless Deposition

机译:化学沉积制备类似网状生物碳纳米纤维的Ni-Co电磁屏蔽材料的制备与研究

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摘要

Electromagnetic interference (EMI) shielding materials made of Ni-Co coated on web-like biocarbon nanofibers were successfully prepared by electroless plating. Biocarbon nanofibers (CF) with a novel web-like structure comprised of entangled and interconnected carbon nanoribbons were obtained using bacterial cellulose pyrolyzed at 1200°C. Paraffin wax matrix composites filled with different loadings (10, 20, and 30 wt%, resp.) of CF and Ni-Co coated CF (NCCF) were prepared. The electrical conductivities and electromagnetic parameters of the composites were investigated by the four-probe method and vector network analysis. From these results, the EMI shielding efficiencies (SE) of NCCF composites were shown to be significantly higher than that of CF at the same mass fraction. The paraffin wax composites containing 30 wt% NCCF showed the highest EMI SE of 41.2 dB (99.99% attenuation), which are attributed to the higher electrical conductivity and permittivity of the NCCF composites than the CF composites. Additionally, EMI SE increased with an increase in CF and NCCF loading and the absorption was determined to be the primary factor governing EMI shielding. This study conclusively reveals that NCCF composites have potential applications as EMI shielding materials.
机译:通过化学镀成功地制备了由Ni-Co制成的电磁干扰(EMI)屏蔽材料,该材料涂覆在网状生物碳纳米纤维上。使用在1200°C下热解的细菌纤维素,可以得到具有新型网状结构的生物碳纳米纤维(CF),该结构由缠结和相互连接的碳纳米带组成。制备了填充了CF和Ni-Co涂覆的CF(NCCF)的不同负载量(分别为10、20和30 wt%)的石蜡基复合材料。采用四探针法和矢量网络分析法研究了复合材料的电导率和电磁参数。从这些结果可以看出,在相同质量分数下,NCCF复合材料的EMI屏蔽效率(SE)显着高于CF。含有30%(重量)NCCF的石蜡复合材料显示最高的EMI SE为41.2%dB(衰减为99.99%),这归因于NCCF复合材料比CF复合材料具有更高的电导率和介电常数。此外,EMI SE随着CF和NCCF负载的增加而增加,吸收被确定为控制EMI屏蔽的主要因素。这项研究最终表明,NCCF复合材料具有作为EMI屏蔽材料的潜在应用。

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