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具有智能声学敏感性的柔性、透明且导电的TiCT MXene-银纳米线薄膜用于高性能电磁干扰屏蔽

Flexible, Transparent, and Conductive TiCT MXene-Silver Nanowire Films with Smart Acoustic Sensitivity for High-Performance Electromagnetic Interference Shielding.

作者信息

Chen Wei, Liu Liu-Xin, Zhang Hao-Bin, Yu Zhong-Zhen

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

Beijing Key Laboratory of Advanced Functional Polymer Composites, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

ACS Nano. 2020 Dec 22;14(12):16643-16653. doi: 10.1021/acsnano.0c01635. Epub 2020 Jun 1.

Abstract

Although flexible, transparent, and conductive materials are increasingly required for electromagnetic interference (EMI) shielding applications in foldable and wearable electronics, it remains a great challenge to achieve outstanding shielding performances while retaining high light transmittances. Herein, a multiscale structure optimization strategy is proposed to fabricate a transparent and conductive silver nanowire (AgNW) film with both high EMI shielding performance and high light transmittance by a scalable spray-coating technique. By decorating with a TiCT MXene coating, the connection and integrity of the AgNW network are greatly improved by welding the nanowire junctions. Compared to a neat AgNW film (21 dB) with the same AgNW density, the TiCT MXene-welded AgNW film shows a much higher EMI shielding performance (34 dB) with better mechanical and environmental stabilities. Furthermore, the layered structure design on the macroscopic scale results in an even higher EMI shielding efficiency of 49.2 dB with a high light transmittance of ∼83%. With the TiCT MXene coating and the PET substrate as a triboelectric pair, the layered structure offers great flexibility for the transparent film to integrate smart sound monitoring capability. Therefore, the combination of excellent EMI shielding performance, high light transmittance, and sensitive pressure response makes the TiCT MXene-welded AgNW films promising for many potential applications in next-generation electronics.

摘要

尽管可折叠和可穿戴电子产品中的电磁干扰(EMI)屏蔽应用对柔性、透明和导电材料的需求日益增加,但在保持高透光率的同时实现出色的屏蔽性能仍然是一个巨大的挑战。在此,提出了一种多尺度结构优化策略,通过可扩展的喷涂技术制备具有高EMI屏蔽性能和高透光率的透明导电银纳米线(AgNW)薄膜。通过用TiCT MXene涂层进行修饰,通过焊接纳米线结极大地改善了AgNW网络的连接和完整性。与具有相同AgNW密度的纯AgNW薄膜(21 dB)相比,TiCT MXene焊接的AgNW薄膜表现出更高的EMI屏蔽性能(34 dB),具有更好的机械和环境稳定性。此外,宏观尺度上的分层结构设计导致更高的EMI屏蔽效率达到49.2 dB,同时具有约83%的高透光率。以TiCT MXene涂层和PET基板作为摩擦电对,分层结构为透明薄膜集成智能声音监测能力提供了极大的灵活性。因此,优异的EMI屏蔽性能、高透光率和灵敏的压力响应相结合,使得TiCT MXene焊接的AgNW薄膜在下一代电子产品中具有许多潜在应用前景。

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