Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/99287
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Title: Stretchable and conductive fibers fabricated by a continuous method for wearable device
Authors: Ma, Z 
Huang, Q 
Zhou, N
Zhuang, Q 
Ng, SW 
Zheng, Z 
Issue Date: 15-Mar-2023
Source: Cell reports physical science, 15 Mar. 2023, v. 4, no. 3, 101300
Abstract: Stretchable and conductive fibers are building blocks for the development of a wide range of wearable and stretchable electronics owing to their small size, light weight, omnidirectional pliability and elasticity, and outstanding integration ability. Despite a large number of reports in the past decade, there is a lack of a continuous and scalable approach to manufacturing stretchable and conductive fibers with sufficient strength, elasticity, conductivity, and durability. Here we report a high-throughput fabrication method based on continuous multimaterial thermal drawing and chemical deposition processes to produce highly stretchable and conductive fibers, which are suitable for being twisted into textile yarns, woven and knitted into textile fabrics, or braided and stitched onto textile structures. We demonstrate the assembly of these stretchable and conductive fibers into breathable, machine-washable, and wearable devices for body motion detection, electrothermal therapy, and electrocardiograph signal detection.
Keywords: Electronic textile
Conductive fiber
Stretchable
Fiber
Thermal drawing
Wearable electronics
Publisher: Cell Press
Journal: Cell reports physical science 
EISSN: 2666-3864
DOI: 10.1016/j.xcrp.2023.101300
Rights: © 2023 The Author(s).
This is an open access article under the CC BY-NC-ND 4.0 license (https://creativecommons.org/licenses/by-nc-nd/4.0/)
The following publication Ma, Z., Huang, Q., Zhou, N., Zhuang, Q., Ng, S. W., & Zheng, Z. (2023). Stretchable and conductive fibers fabricated by a continuous method for wearable devices. Cell Reports Physical Science, 4(3), 101300 is available at https://doi.org/10.1016/j.xcrp.2023.101300.
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