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用于电磁通信与衰减的多功能液态金属复合材料

Multifunctional Liquid-Metal Composites for Electromagnetic Communication and Attenuation.

作者信息

Chen Jiali, Yi Da, Shen Bin, Zheng Wenge

机构信息

Laboratory of Polymers and Composites, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, Zhejiang, 315201, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Mater. 2025 Jun;37(24):e2404595. doi: 10.1002/adma.202404595. Epub 2025 May 6.

Abstract

Efficient and reliable information transmission is crucial in the widespread use of electronic products and wireless communication. Additionally, it is vital to address the electromagnetic interference (EMI) and radiation that arise from the communication process. In particular, the emergence of flexible electronic products has posed new hurdles for EM functional materials with flexibility and high performance. Liquid metal (LM) is an innovative EM functional material that possesses both the conductivity of metals and the fluidity to reconfigure like a liquid. These characteristics paved the way for developing novel flexible electronic devices and products. This review provides an overview of the current status and future potential of LM-based EM functional materials. It highlights the latest progress in LM-based materials for applications such as EMI shielding, EM-wave absorption, and wireless communication (antennas). Finally, the primary obstacles of LM-based EM functional materials are discussed and revealed potential directions for their advancement. Overall, the current research on LM-based EM functional materials indicates that they have great potential to promote the development of EM functional materials, thus providing new possibilities for the advancement of flexible electronic products.

摘要

高效可靠的信息传输对于电子产品的广泛应用和无线通信至关重要。此外,解决通信过程中产生的电磁干扰(EMI)和辐射也至关重要。特别是,柔性电子产品的出现给具有柔韧性和高性能的电磁功能材料带来了新的障碍。液态金属(LM)是一种创新的电磁功能材料,它兼具金属的导电性和像液体一样重新配置的流动性。这些特性为开发新型柔性电子设备和产品铺平了道路。本文综述了基于液态金属的电磁功能材料的现状和未来潜力。它突出了基于液态金属的材料在诸如电磁干扰屏蔽、电磁波吸收和无线通信(天线)等应用方面的最新进展。最后,讨论了基于液态金属的电磁功能材料的主要障碍,并揭示了其发展的潜在方向。总体而言,目前对基于液态金属的电磁功能材料的研究表明,它们在推动电磁功能材料发展方面具有巨大潜力,从而为柔性电子产品的进步提供了新的可能性。

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