首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A multiscale hierarchical architecture of a SiC whiskers–graphite nanosheets/polypyrrole ternary composite for enhanced electromagnetic wave absorption
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A multiscale hierarchical architecture of a SiC whiskers–graphite nanosheets/polypyrrole ternary composite for enhanced electromagnetic wave absorption

机译:用于增强电磁波吸收的SIC晶须 - 石墨纳米片/聚吡咯三元复合材料的多尺度分层体系结构

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A core–shell SiC whiskers–graphite nanosheets/polypyrrole (SiCw–GNs/PPy) heterostructure with excellent electromagnetic (EM) absorption performance was successfully prepared by a simple combined method using glucose as the carbon precursor. The content of GNs could be tailored by the mass fraction of glucose, while a substantial decrease of EM absorption performance of SiCw–GNs is achieved as the GN content increases, which could be attributed to the inferior impedance matching degree and small attenuation constant. Impressively, on coating with the conductive polymer PPy by a simple chemical polymerization method, the SiCw–GNs/PPy heterostructures exhibited superior EM absorption abilities with a minimum reflection loss (RL _(min) ) value of ?64.2 dB and a maximum effective bandwidth of 7.9 GHz, and the matched characteristic impedance and improved loss ability of the SiCw–GNs/PPy heterostructures account for the significant enhancement. The core–shell SiCw–GNs/PPy heterostructures in the present study could be considered as a promising candidate for the oncoming generation of microwave absorbing materials.
机译:通过使用葡萄糖作为碳前体的简单组合方法成功地制备了具有优异电磁(EM)吸收性能的核 - 壳SiC晶须 - 石墨纳米晶须/聚吡咯(SiCW-GNS / PPY)异质结构。 GNS的含量可以通过葡萄糖的质量分数来定制,而SICW-GNS的显着降低是由于GN含量的增加而达到的,这可能归因于差阻抗匹配程度和小衰减常数。在通过简单的化学聚合方法涂覆导电聚合物PPY的涂覆时,SiCW-GNS / PPY异质结构表现出具有最高的EM吸收能力,最小反射损失(RL _(MIN))值(RL _(min))值,最大有效带宽7.9 GHz,以及SICW-GNS / PPY异质结构占显着增强的匹配特征阻抗和改善的丧失能力。本研究中的核心壳SiCw-GNS / PPY异质结构可被认为是迎面而来的微波吸收材料产生的有希望的候选者。

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