编织
织物
可穿戴计算机
数码产品
计算机科学
印刷电路板
可穿戴技术
机织物
集成电路
电子元件
柔性电子器件
电气工程
材料科学
嵌入式系统
机械工程
工程类
复合材料
作者
Yuxin Yang,Xiaofei Wei,Nannan Zhang,Juanjuan Zheng,Xing Chen,Qian Wen,Xinxin Luo,Chong Yew Lee,Xiaohong Liu,Xingcai Zhang,Jun Chen,Changyuan Tao,Wei Zhang,Xing He Fan
标识
DOI:10.1038/s41467-021-25075-8
摘要
While the printed circuit board (PCB) has been widely considered as the building block of integrated electronics, the world is switching to pursue new ways of merging integrated electronic circuits with textiles to create flexible and wearable devices. Herein, as an alternative for PCB, we described a non-printed integrated-circuit textile (NIT) for biomedical and theranostic application via a weaving method. All the devices are built as fibers or interlaced nodes and woven into a deformable textile integrated circuit. Built on an electrochemical gating principle, the fiber-woven-type transistors exhibit superior bending or stretching robustness, and were woven as a textile logical computing module to distinguish different emergencies. A fiber-type sweat sensor was woven with strain and light sensors fibers for simultaneously monitoring body health and the environment. With a photo-rechargeable energy textile based on a detailed power consumption analysis, the woven circuit textile is completely self-powered and capable of both wireless biomedical monitoring and early warning. The NIT could be used as a 24/7 private AI "nurse" for routine healthcare, diabetes monitoring, or emergencies such as hypoglycemia, metabolic alkalosis, and even COVID-19 patient care, a potential future on-body AI hardware and possibly a forerunner to fabric-like computers.
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