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Nanowire-assisted freestanding liquid metal thin-film patterns for highly stretchable electrodes on 3D surfaces

Cited 26 time in Web of Science Cited 25 time in Scopus
Authors

Kim, Minwoo; Cho, Chulmin; Shin, Wooseop; Park, Jung Jae; Kim, Jaewon; Won, Phillip; Majidi, Carmel; Ko, Seung Hwan

Issue Date
2022-12
Publisher
Nature Publishing Group
Citation
npj Flexible Electronics, Vol.6 No.1, p. 99
Abstract
Stretchable electronics is playing an integral role in fields such as wearable electronics and soft robots. Among soft conductive materials, liquid metal is drawing intense attention as an electrode material due to its liquid nature at room temperature. However, the merits of liquid metal conductor are limited by the presence of substrates or enclosed microchannels from physical disturbances by the underlying substrate when applying it to 3D surface and modifying complex circuit. To overcome this limitation, we develop freestanding patterned liquid metal thin-film conductor (FS-GaIn). FS-GaIn was achieved by introducing metal nanowires to liquid metal and subsequent sequential selective laser processing and etching of directly patterned traces. FS-GaIn can be applied directly to nonflat surface without substrates. When incorporated into electrical circuits, FS-GaIn shows high electrical conductivity, stretchability, and stability. The concept of freestanding liquid metal can open a functionality to the conventional liquid metal electronics.
ISSN
2397-4621
URI
https://hdl.handle.net/10371/205404
DOI
https://doi.org/10.1038/s41528-022-00232-1
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Related Researcher

  • College of Engineering
  • Department of Mechanical Engineering
Research Area Laser Assisted Patterning, Liquid Crystal Elastomer, Stretchable Electronics, 로보틱스, 스마트 제조, 열공학

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