材料科学
电磁屏蔽
导电体
电磁干扰
电磁干扰
护盾
欧姆接触
光电子学
桥接(联网)
数码产品
电阻式触摸屏
伪装
电磁兼容性
纳米线
柔性电子器件
流体学
电磁环境
电接点
极化(电化学)
电子工程
共形映射
可伸缩电子设备
互连
计算机科学
复合数
光开关
电磁辐射
光子学
干扰(通信)
反射(计算机编程)
纳米技术
可穿戴技术
电磁学
多路复用
可重构性
作者
Haiyuan Wang,Zhen Xiang,Wanquan Hu,Yifan Yin,P. Zhang,Bing Li,Zichen Lu,Chong Wu,Methu Dev Nath,Bin Yuan,Wei Lu
标识
DOI:10.1002/adfm.202529589
摘要
ABSTRACT The rapid expansion of networked, intelligent human‑interactive devices urgently calls for flexible, transparent materials that can effectively suppress electromagnetic interference (EMI). However, conventional transparent conductors face an inherent performance trade‐off between optical transmittance, electrical conductivity, and mechanical flexibility. Herein, we report a dynamic liquid‐metal (LM) bridging strategy to construct a high‑performance, multifunctional composite film. This is achieved by integrating a spiderweb‐inspired silver nanowire (AgNW) mesh with a conformal Ti 3 C 2 T x MXene, interconnected via chemically activated LM nanojunctions. These fluidic junctions form reconfigurable conductive bridges that drastically reduce contact resistance, while simultaneously creating polarization‑active heterointerfaces with the MXene overlayer. This hierarchical architecture decouples electrical conductivity from optical opacity, enabling a dominant shielding mechanism that combines efficient mirror‑current reflection with enhanced interfacial polarization and Ohmic loss. The resulting flexible transparent film achieves a state‑of‑the‑art specific shielding effectiveness (SSE/t) of 3.38 × 10 5 dB cm 2 g −1 in the X‐band. Moreover, the dynamically bridged networks concurrently serve as sensitive strain sensors and uniform transparent heaters, integrating transparency, electromagnetic protection, sensing, and thermal management into a single platform. This work establishes a generalizable design strategy for advanced transparent EMI shields in next‐generation wearable electronics and smart systems.
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