材料科学
电磁屏蔽
碳纳米管
制作
复合材料
电阻率和电导率
电磁干扰
电磁干扰
电导率
导电体
屏蔽效应
薄板电阻
光电子学
图层(电子)
电子工程
电气工程
医学
化学
替代医学
物理化学
病理
工程类
作者
Fan Yang,Shengcun Ma,Chia Miang Khor,Yiming Su,Zahra Barani,Zhenpeng Xu,Arthur Boyko,Arpita Iddya,Naama Segev-Mark,Xiaoyu Zheng,Fariborz Kargar,Alexander A. Balandin,Guy Z. Ramon,Igor Maria De Rosa,Eric M.V. Hoek,David Jassby
出处
期刊:Carbon
[Elsevier BV]
日期:2023-08-12
卷期号:214: 118370-118370
被引量:22
标识
DOI:10.1016/j.carbon.2023.118370
摘要
Light-weight, thin, and robust electromagnetic shielding materials with high electrical conductivity are needed for advanced modern electronics and telecommunication technologies to protect circuits from electromagnetic interference. Carbon nanotubes (CNT) are ideal candidates for electromagnetic shielding materials due to their excellent mechanical strength, high electrical conductivity, and light weight. However, the relatively poor electrical conductivity of CNT films, a result of the many points of contact resistance between neighboring CNTs, is an obstacle towards their utilization as a shielding material. Here, we propose a facile CNT film fabrication method that enhances the conductivity of CNT films by collapsing the separation between neighboring CNTs (i.e., densifying the material) in the CNT network. The dense CNT films resulting from this facile method exhibit high electrical conductivity (∼106 S m-1), and achieve excellent shielding of 99.999992% (71 dB) at frequencies between 8.2 GHz and 12.4 GHz with a thickness of 14.3 μm. The remarkable absolute shielding effectiveness (3.50 × 105 dB cm-2 g-1) is due to the material's low density (i.e., ∼1.0 g/cm3), thinness (i.e., 1.3–14.3 μm), and metal-like conductivity. Also, the produced CNT sheet is an ideal substrate for gold decoration that can dramatically enhance the EMI shielding performance further (EMI SE increased from 43.90 dB in the loose film to 56.67 dB in the dense film, which further increased to 66.12 dB when the dense CNT film was coated with a thin gold layer). The outstanding properties of gold-decorated dense CNT films make them strong candidates to meet the electromagnetic shielding needs of modern cutting-edge, lightweight, and compact electronic devices.
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