Suo Jialu, Guan Li, Chen Peng, Zhu Yujie, Lin Mengmeng, Hu Yuanhua, Liu Zhen, Han Shijie, Han Shixuan, Bai Zhongyi, Guo Xiaoqin, Zhao Biao, Zhang Rui
Henan Key Laboratory of Aeronautical Materials and Application Technology, Henan International Joint Laboratory of Aeronautical Function Materials and Advanced Processing Technology, School of Material Science and Engineering, Zhengzhou University of Aeronautics, Zhengzhou 450046, China.
Institute of Advanced Ceramics, Henan Academy of Sciences, Zhengzhou 450046, China.
Nanomaterials (Basel). 2025 Sep 1;15(17):1346. doi: 10.3390/nano15171346.
Electromagnetic shielding materials are pivotal for suppressing electromagnetic radiation and mitigating potential health risks that electronic devices may pose to humans. Beyond health protection, they also hold significant strategic value in safeguarding national information security and maintaining stability. In the research of electromagnetic shielding materials, continuous technological advancements and growing application demands have driven the emergence of various novel materials. Among these, liquid metal (LM) exhibits outstanding properties-including exceptional electrical conductivity, excellent fluidity, and superior deformability-which endow it with substantial potential for application in electromagnetic shielding. Looking ahead, with the continuous advancement in related technologies, liquid metal-based electromagnetic shielding materials are expected to provide effective solutions to key challenges such as electromagnetic pollution and interference. This contribution synthesizes the latest literature. First, it clarifies the nomenclature and classification of liquid metals, as well as the fundamental framework for electromagnetic shielding. Then, it systematically distills recent research advances based on four key design motifs. These motifs include monolithic liquid metal (LM) scaffolds, LM/conductive-filler blends, LM/magnetic particle composites, and architectured multifunctional architectures. Finally, this review identifies current bottlenecks in the field and outlines directions for future development, which aim to achieve ultra-lightweight, broadband, and intelligent LM-based electromagnetic shields.
电磁屏蔽材料对于抑制电磁辐射以及减轻电子设备可能对人类造成的潜在健康风险至关重要。除了健康保护之外,它们在保障国家信息安全和维护稳定方面也具有重大的战略价值。在电磁屏蔽材料的研究中,持续的技术进步和不断增长的应用需求推动了各种新型材料的出现。其中,液态金属(LM)表现出优异的性能,包括出色的导电性、良好的流动性和卓越的可变形性,这使其在电磁屏蔽应用中具有巨大潜力。展望未来,随着相关技术的不断进步,基于液态金属的电磁屏蔽材料有望为电磁污染和干扰等关键挑战提供有效的解决方案。本论文综合了最新文献。首先,阐明了液态金属的命名和分类,以及电磁屏蔽的基本框架。然后,基于四个关键设计主题系统地提炼了近期的研究进展。这些主题包括整体液态金属(LM)支架、LM/导电填料混合物、LM/磁性颗粒复合材料和结构化多功能结构。最后,本综述确定了该领域当前的瓶颈,并概述了未来的发展方向,旨在实现基于液态金属的超轻质、宽带和智能电磁屏蔽。