Environment-friendly carbon nanotube based flexible electronics for noninvasive and wearable healthcare
Article
Article Title | Environment-friendly carbon nanotube based |
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ERA Journal ID | 201060 |
Article Category | Article |
Authors | Dinh, Toan (Author), Phan, Hoang-Phuong (Author), Nguyen, Tuan-Khoa (Author), Qamar, Afzaal (Author), Foisal, Abu Riduan Md (Author), Nguyen, Thanh Viet (Author), Tran, Canh-Dung (Author), Zhu, Yong (Author), Nguyen, Nam-Trung (Author) and Dao, Dzung Viet (Author) |
Journal Title | Journal of Materials Chemistry C |
Journal Citation | 4 (42), pp. 10061-10068 |
Number of Pages | 8 |
Year | 2016 |
Publisher | The Royal Society of Chemistry |
Place of Publication | United Kingdom |
ISSN | 2050-7526 |
2050-7534 | |
Digital Object Identifier (DOI) | https://doi.org/10.1039/c6tc02708c |
Web Address (URL) | http://www.rsc.org/MaterialsC |
Abstract | Flexible and stretchable electronics have a wide variety of wearable applications in portable sensors, flexible electrodes/heaters, flexible circuits and stretchable displays. Spinnable carbon nanotubes (CNTs) constructed on flexible substrates are potential materials for wearable sensing applications owing to their high thermal and electrical conductivity, low mass density and excellent mechanical properties. Here, we demonstrate a wearable thermal flow sensor for healthcare using lightweight, high strength, flexible CNT yarns as hotwires, pencil graphite as electrodes, and lightweight, recyclable and biodegradable |
ANZSRC Field of Research 2020 | 401006. Systems engineering |
Public Notes | Files associated with this item cannot be displayed due to copyright restrictions. |
Byline Affiliations | Griffith University |
Hanoi University of Science and Technology, Vietnam | |
School of Mechanical and Electrical Engineering | |
Institution of Origin | University of Southern Queensland |
https://research.usq.edu.au/item/q3q71/environment-friendly-carbon-nanotube-based-flexible-electronics-for-noninvasive-and-wearable-healthcare
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