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超越二维过渡金属碳化物和碳氮化物:用于电磁干扰屏蔽的MXenes材料

Beyond TiCT: MXenes for Electromagnetic Interference Shielding.

作者信息

Han Meikang, Shuck Christopher Eugene, Rakhmanov Roman, Parchment David, Anasori Babak, Koo Chong Min, Friedman Gary, Gogotsi Yury

机构信息

A. J. Drexel Nanomaterials Institute and Department of Materials Science and Engineering, Drexel University, Philadelphia 19104, Pennsylvania, United States.

Department of Electrical and Computer Engineering, Drexel University, Philadelphia 19104, Pennsylvania, United States.

出版信息

ACS Nano. 2020 Apr 28;14(4):5008-5016. doi: 10.1021/acsnano.0c01312. Epub 2020 Mar 17.

Abstract

New ultrathin and multifunctional electromagnetic interference (EMI) shielding materials are required for protecting electronics against electromagnetic pollution in the fifth-generation networks and Internet of Things era. Micrometer-thin TiCT MXene films have shown the best EMI shielding performance among synthetic materials so far. Yet, the effects of elemental composition, layer structure, and transition-metal arrangement on EMI shielding properties of MXenes have not been explored, despite the fact that more than 30 different MXenes have been reported, and many more are possible. Here, we report on a systematic study of EMI shielding properties of 16 different MXenes, which cover single-metal MXenes, ordered double-metal carbide MXenes, and random solid solution MXenes of M and X elements. This is the largest set of MXene compositions ever reported in a comparative study. Films with thicknesses ranging from nanometers to micrometers were produced by spin-casting, spray-coating, and vacuum-assisted filtration. All MXenes achieved effective EMI shielding (>20 dB) in micrometer-thick films. The EMI shielding effectiveness of sprayed TiCT film with a thickness of only ∼40 nm reaches 21 dB. Adjustable EMI shielding properties were achieved in solid solution MXenes with different ratios of elements. A transfer matrix model was shown to fit EMI shielding data for highly conductive MXenes but could not describe the behavior of materials with low conductivity. This work shows that many members of the large MXene family can be used for EMI shielding, contributing to designing ultrathin, flexible, and multifunctional EMI shielding films benefiting from specific characteristics of individual MXenes.

摘要

在第五代网络和物联网时代,需要新型超薄多功能电磁干扰(EMI)屏蔽材料来保护电子设备免受电磁污染。到目前为止,微米级的TiCT MXene薄膜在合成材料中展现出了最佳的EMI屏蔽性能。然而,尽管已经报道了30多种不同的MXene,并且可能还有更多,但尚未探究元素组成、层结构和过渡金属排列对MXene的EMI屏蔽性能的影响。在此,我们报告了对16种不同MXene的EMI屏蔽性能的系统研究,这些MXene涵盖单金属MXene、有序双金属碳化物MXene以及M和X元素的随机固溶体MXene。这是在一项对比研究中报道的最大一组MXene组成。通过旋涂、喷涂和真空辅助过滤制备了厚度从纳米到微米不等的薄膜。所有MXene在微米级厚的薄膜中都实现了有效的EMI屏蔽(>20 dB)。厚度仅约40 nm的喷涂TiCT薄膜的EMI屏蔽效能达到21 dB。在具有不同元素比例的固溶体MXene中实现了可调节的EMI屏蔽性能。结果表明,转移矩阵模型适用于高导电MXene的EMI屏蔽数据,但无法描述低导电材料的行为。这项工作表明,大型MXene家族的许多成员可用于EMI屏蔽,有助于设计受益于单个MXene特定特性的超薄、柔性和多功能EMI屏蔽薄膜。

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