Author:
Tai Chao-Yi,Lin Chun-Yu,Liu Tang-Chun,Jia Lu-Chiang,Jones Thomas,Abdolvand Amin
Abstract
AbstractOne-step direct patterning of high definition conductive tracks in textiles is realized through laser direct writing in combination with a silver organometallic ink developed in-house. Photoreduction, nano-crystallization, and sintering are accomplished in one pass under the irradiation of a CW green laser light (λ = 532 nm) at moderate intensities (I ≥ 95 mW/mm2). By tailoring the surface tension and viscosity of the ink, high-definition conductive tracks are formed in weft-knitted polyester-Spandex composite fabrics, well-following the laser’s profile with negligible coffee stain effect. Length resistance as low as 4 Ω/cm is measured and anisotropy of the gauge factor as high as 25 is achieved. The metallized fabric exhibits reversible and hysteresis-free electromechanical responses subject to high strains. Durability assessment qualifies that the as-metallized strain sensors are able to sustain their performance for over 5000 stretch/release cycles, demonstrating its potential applications in biaxial strain sensing and interactive smart textiles.
Funder
RSE and MOST Bilateral Visits Programme
UK-TW Innovative Industries Researcher Placement Scheme
Ministry of Science and Technology, Taiwan
Publisher
Springer Science and Business Media LLC
Reference61 articles.
1. Canavan, K. Applications of Textile Products in Textiles and Fashion 1st edn, 531–545 (Woodhead Publishing, 2014).
2. Gorgutsa, S., Blais-Roberge, M., Viens, J., LaRochelle, S. & Messaddeq, Y. User-interactive and wireless-communicating RF textiles. Adv. Mater. 1(4), 1600032 (2016).
3. Anbalagan, A., Sundarsingh, E. F. & Ramalingam, V. S. Design and experimental evaluation of a novel on-body textile antenna for unicast applications. Microw. Opt. Technol. Lett. 62(2), 789–799 (2020).
4. Hugo, L. et al. A review of IoT sensing application and challenges using RFID and sensor networks. Sensor 20, 2495 (2020).
5. Fernández-Caramés, T. M. & Fraga-Lamas, P. A review on human-centered IoT-connected smart labels for the Industry 4.0. IEEE Access 6, 25939–25957 (2018).
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