Large-area display textiles integrated with functional systems

织物 电致发光显示器 编织 可穿戴计算机 数码产品 可穿戴技术 灵活的显示器 电致发光 LED显示屏 计算机科学 桥(图论) 纳米技术 电信 材料科学 电气工程 工程类 机械工程 嵌入式系统 薄膜晶体管 内科学 复合材料 图层(电子) 医学
作者
Xiang Shi,Yong Zuo,Peng Zhai,Jiahao Shen,Yangyiwei Yang,Zhen Gao,Meng Liao,Jingxia Wu,Jiawei Wang,Xiaojie Xu,Qi Tong,Bo Zhang,Bingjie Wang,Xuemei Sun,Lihua Zhang,Qibing Pei,Dayong Jin,Peining Chen,Huisheng Peng
出处
期刊:Nature [Nature Portfolio]
卷期号:591 (7849): 240-245 被引量:1022
标识
DOI:10.1038/s41586-021-03295-8
摘要

Displays are basic building blocks of modern electronics1,2. Integrating displays into textiles offers exciting opportunities for smart electronic textiles—the ultimate goal of wearable technology, poised to change the way in which we interact with electronic devices3–6. Display textiles serve to bridge human–machine interactions7–9, offering, for instance, a real-time communication tool for individuals with voice or speech difficulties. Electronic textiles capable of communicating10, sensing11,12 and supplying electricity13,14 have been reported previously. However, textiles with functional, large-area displays have not yet been achieved, because it is challenging to obtain small illuminating units that are both durable and easy to assemble over a wide area. Here we report a 6-metre-long, 25-centimetre-wide display textile containing 5 × 105 electroluminescent units spaced approximately 800 micrometres apart. Weaving conductive weft and luminescent warp fibres forms micrometre-scale electroluminescent units at the weft–warp contact points. The brightness between electroluminescent units deviates by less than 8 per cent and remains stable even when the textile is bent, stretched or pressed. Our display textile is flexible and breathable and withstands repeated machine-washing, making it suitable for practical applications. We show that an integrated textile system consisting of display, keyboard and power supply can serve as a communication tool, demonstrating the system’s potential within the ‘internet of things’ in various areas, including healthcare. Our approach unifies the fabrication and function of electronic devices with textiles, and we expect that woven-fibre materials will shape the next generation of electronics. A large electronic display textile that is flexible, breathable and withstands repeated machine-washing is integrated with a keyboard and power supply to create a wearable, durable communication tool.
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