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Inkjet‐Printed Wearable Nanosystems for Self‐Powered Technologies
Advanced Materials Interfaces ( IF 5.4 ) Pub Date : 2020-05-04 , DOI: 10.1002/admi.202000015
Tao‐Tse Huang 1 , Wenzhuo Wu 1, 2, 3, 4
Affiliation  

The scalable production of nanomaterials‐based electronic components with mechanically compliable form factors not only provides interesting research topics but also ushers in exciting opportunities for wearable applications in consumer electronics, healthcare, human–machine interface, etc. Wearable nanosystems consist of components such as thin‐film transistors, flexible sensors, energy harvesters, and energy storage devices. Despite the increased interests and efforts in nanotechnology‐enabled wearables, reducing the manufacturing and assembly costs while improving the performance at the device and system level remains a major technological challenge. The inkjet printing process has emerged as a potential economic method for nanomanufacturing functional devices. Here, the authors review the recent advances in inkjet‐printed wearable nanodevices and provide an in‐depth discussion focusing on the materials, manufacturing process, integration, performance issues, and potential applications for inkjet‐printed self‐powered wearable devices. The authors compile a comprehensive list of the reported flexible devices with the corresponding materials employed. Finally, they discuss the challenges and opportunities associated with related topics.

中文翻译:

用于自供电技术的喷墨打印可穿戴纳米系统

具有机械兼容形状因数的基于纳米材料的电子组件的可扩展生产,不仅提供了有趣的研究主题,而且还为消费类电子产品,医疗保健,人机界面等中的可穿戴应用带来了令人兴奋的机遇。可穿戴纳米系统由诸如薄的组件组成薄膜晶体管,柔性传感器,能量收集器和能量存储设备。尽管人们对纳米技术可穿戴设备越来越感兴趣,并做出了很多努力,但是在提高设备和系统级性能的同时,降低制造和组装成本仍然是一项重大的技术挑战。喷墨印刷工艺已经成为纳米制造功能器件的一种潜在的经济方法。这里,作者回顾了喷墨打印可穿戴纳米设备的最新进展,并进行了深入讨论,重点讨论了喷墨打印自供电可穿戴设备的材料,制造工艺,集成,性能问题以及潜在应用。作者使用所使用的相应材料,对所报告的柔性设备进行了全面的整理。最后,他们讨论与相关主题相关的挑战和机遇。
更新日期:2020-05-04
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