Inkjet printing for flexible and wearable electronics
Flexible and wearable electronic devices are emerging as the novel platform for portable health monitoring, human–machine interaction, and some other electronic/optic applications. Future development of human-friendly smart electronics relies on efficient manufacturing and processing of advanced fun...
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Published in | APL materials Vol. 8; no. 12; pp. 120705 - 120705-22 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
AIP Publishing LLC
01.12.2020
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Online Access | Get full text |
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Summary: | Flexible and wearable electronic devices are emerging as the novel platform for portable
health monitoring, human–machine interaction, and some other electronic/optic
applications. Future development of human-friendly smart electronics relies on efficient
manufacturing and processing of advanced functional materials on flexible/stretchable
substrates with effective device integration. Inkjet printing, known as a highly efficient
solution-based printing and patterning technology with low-cost, high-quality, and
high-throughput advantages, suits large-scale fabrication of flexible and wearable
electronics. Over the years, researchers focused on high pattern resolution and uniformity
on flexible substrates for advanced electrical/optical performances by various inkjet
printing techniques. Different ink materials that can realize multiple functions have been
fully investigated for achieving favorable printability and desired interactions with the
substrates. Here, the most recently reported inkjet printing strategies, functional ink
materials, and diverse inkjet-printed wearable electronic devices for practical
applications (e.g., sensors, displays, transistors, and energy storage devices) are
summarized. An outlook on future challenges as well as opportunities of inkjet-printed
flexible and wearable electronics for research development and industrial
commercialization is also presented. |
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ISSN: | 2166-532X 2166-532X |
DOI: | 10.1063/5.0031669 |