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电磁干扰屏蔽薄膜:结构设计与展望

Electromagnetic Interference Shielding Films: Structure Design and Prospects.

作者信息

Zhao Hui, Wang Jingfeng, He Mukun, Li Shuai, Guo Hua, Kan Dongxiao, Qiu Hua, Chen Lixin, Gu Junwei

机构信息

Northwest Institute for Nonferrous Metal Research, Xi'an, Shaanxi, 710016, China.

Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, Shaanxi, 710072, China.

出版信息

Small Methods. 2025 May;9(5):e2401324. doi: 10.1002/smtd.202401324. Epub 2024 Oct 10.

Abstract

The popularity of portable and wearable flexible electronic devices, coupled with the rapid advancements in military field, requires electromagnetic interference (EMI) shielding materials with lightweight, thin, and flexible characteristics, which are incomparable for traditional EMI shielding materials. The film materials can fulfill the above requirements, making them among the most promising EMI shielding materials for next-generation electronic devices. Meticulously controlling structure of composite film materials while optimizing the electromagnetic parameters of the constructed components can effectively dissipate and transform electromagnetic wave energy. Herein, the review systematically outlines high-performance EMI shielding composite films through structural design strategies, including homogeneous structure, layered structure, and porous structure. The attenuation mechanism of EMI shielding materials and the evaluation (Schelkunoff theory and calculation theory) of EMI shielding performance are introduced in detail. Moreover, the effect of structure attributes and electromagnetic properties of composite films on the EMI shielding performance is analyzed, while summarizing design criteria and elucidating the relevant EMI shielding mechanism. Finally, the future challenges and potential application prospects of EMI shielding composite films are prospected. This review provides crucial guidance for the construction of advanced EMI shielding films tailored for highly customized and personalized electronic devices in the future.

摘要

便携式和可穿戴柔性电子设备的普及,再加上军事领域的快速发展,需要具有轻质、超薄和柔性特性的电磁干扰(EMI)屏蔽材料,这是传统EMI屏蔽材料无法比拟的。薄膜材料能够满足上述要求,使其成为下一代电子设备最有前景的EMI屏蔽材料之一。精心控制复合薄膜材料的结构,同时优化所构建组件的电磁参数,可以有效地耗散和转换电磁波能量。在此,本综述通过结构设计策略,包括均匀结构、层状结构和多孔结构,系统地概述了高性能EMI屏蔽复合薄膜。详细介绍了EMI屏蔽材料的衰减机制以及EMI屏蔽性能的评估(谢尔库诺夫理论和计算理论)。此外,分析了复合薄膜的结构属性和电磁性能对EMI屏蔽性能的影响,同时总结了设计标准并阐明了相关的EMI屏蔽机制。最后,展望了EMI屏蔽复合薄膜未来的挑战和潜在应用前景。本综述为未来针对高度定制化和个性化电子设备构建先进的EMI屏蔽薄膜提供了关键指导。

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