材料科学
电子线路
天线(收音机)
光电子学
微带线
无线
印刷电路板
导电体
输电线路
灵敏度(控制系统)
墨水池
衰减
传输(电信)
可靠性(半导体)
降级(电信)
微带天线
天线阵
电子工程
丝网印刷
贴片天线
电气工程
可穿戴技术
数码产品
柔性电子器件
导电油墨
聚乙烯吡咯烷酮
互连
堆积
可穿戴计算机
计算机科学
纳米技术
数据传输
集成电路
3D打印
频道(广播)
作者
Lu Ju,Bin Yu,Rui Wang,Huichao Chen,Kexin Hou,Chao Zhang,Mingyang Geng,Yunqian Dai,Yingying Zhang,Ying‐Shi Guan,Cunjiang Yu,Wei‐Bing Lu
标识
DOI:10.1002/advs.202522350
摘要
Millimeter-wave technologies are critical to the next generation of wireless body area networks, offering high data rates an d wide bandwidths. However, realizing mechanically robust and electromagnetically stable mmWave devices remains a significant challenge due to the high sensitivity of radio-frequency performance to conductive degradation under deformation. Here, we report a strategy to fabricate deformation-insensitive, high-performance mmWave electronic textiles (E-textiles) by combining specially engineered liquid metal (LM) inks with a high-resolution "dual-mask" printing technique. The LM inks, composed of polyvinylpyrrolidone (PVP)-stabilized gallium-based nanodroplets, exhibit excellent surface compatibility, self-healing behavior, and high conductivity (∼11.16 mΩ/sq), enabling the formation of conformal, durable circuits on textiles. We demonstrate a 26 GHz LM-textile antenna array maintaining 9.65 dBi gain after repeated bending, as well as a microstrip transmission line with a negligible attenuation increase after mechanical cycling. Compared to printed silver inks and metallic-cloth-based antennas, the LM-textile antenna exhibits superior mechanical reliability and maintains a wireless transmission range of 4.5 meters for high-definition images. These results establish LM-textiles as a promising platform for future wearable mmWave devices, offering scalable, flexible, and resilient solutions for high-frequency wireless communication.
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