数码产品
材料科学
光电子学
纳米技术
复合材料
工程类
电气工程
作者
Haitao Liu,Haichuan Li,Yexiong Wang,Yan Liu,Lizhi Xiao,Weidong Guo,Yanli Lin,Hongteng Wang,Tianqi Wang,Hsueh-Jen Yan,Shunkai Lai,Yaofei Chen,Zongxia Mou,Lei Chen,Yunhan Luo,Gui-Shi Liu,Xingcai Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-11-27
被引量:3
标识
DOI:10.1021/acs.nanolett.4c02474
摘要
Electrophysiological (EP) signals are key biomarkers for monitoring mental fatigue (MF) and general health, but state-of-the-art wearable EP-based MF monitoring systems are bulky and require user-specific, labeled data. Ultrathin epidermal electrodes with high performance are ideal for constructing imperceptive EP sensing systems; however, the lack of a simple and scalable fabrication delays their application in MF recognition. Here, we report a facile, scalable printing-welding-transferring strategy (PWT) for printing μm-thickness micropatterned silver nanowires (AgNWs)/sticky polydimethylsiloxane, welding the AgNWs via plasmonic effect, and transferring the electrode to skin as tattoos. The PWT provides electrodes with conformability, comfort, and stability for EP sensing. Leveraging the facile and scalable PWT, we develop plug-and-play wireless multimodal epidermal electronics integrated with an unsupervised transfer learning (UTL) scheme for MF recognition across various users. The UTL adaptively minimizes the intersubject difference and achieves high accuracy, without demand of expensive computation and labels from target users.
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