High-performance ZnO:CuO composite-based fiber-shaped electrode for non-enzymatic glucose sensing in biological fluids
- Authors
- Yuan, Huimin; Hilal, Muhammad; Ali, Yasir; Abdo, Hany S.; Cai, Zhicheng; Kim, Hyojung; Ullah, Ubaid; Fayaz, Huma; Xie, Wanfeng; Han, Jeong In
- Issue Date
- Nov-2024
- Publisher
- Elsevier
- Keywords
- RF magnetron co-sputtering; CuO:ZnO heterojunctions; Fiber-based sensors; Enzyme-free glucose sensor
- Citation
- Surfaces and Interfaces, v.54, pp 1 - 11
- Pages
- 11
- Indexed
- SCIE
SCOPUS
- Journal Title
- Surfaces and Interfaces
- Volume
- 54
- Start Page
- 1
- End Page
- 11
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/56159
- DOI
- 10.1016/j.surfin.2024.105266
- ISSN
- 2468-0230
2468-0230
- Abstract
- The growing diabetes epidemic necessitates new glucose sensors, as traditional enzyme-based and planar electrodes face limitations in environmental stability and seamless integration into wearable technology. This research tackles these issues by designing a flexible, enzyme-free glucose sensor utilizing a co-deposited ZnO:CuO (CZ) composite on PET monofilament. This approach improves the tensile strength (55 mm at 2.7 kg.f) and electrical conductance (0.32 S), of the Ni-coated PET fiber, resulting in a strong and reliable sensing platform. The electrode's enlarged electrochemical surface area (0.11 cm(2)), offer a high density of active sites for glucose interaction, and the synergistic interface significantly enhances both ion and charge mobility. This results in exceptional sensitivity (35.05 mA.cm(- 2) .mM(- 1) ), a rapid response (24 s), and a low detection limit (0.15 mM). Durability tests demonstrate that the sensor retains 80% of its sensitivity after 500 bending cycles, making it well-suited for wearable applications. Furthermore, the sensor accurately detects glucose in biological samples, such as saliva, highlighting its potential for non-invasive, real-time glucose monitoring in wearable healthcare systems.
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Collections - College of Engineering > Department of Chemical and Biochemical Engineering > 1. Journal Articles

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