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액체금속을 활용한 플렉서블 섬유상 전극 제조 및 도파민 센서로의 응용Liquid Metal Enabled Flexible Fiber Microelectrode for Dopamine Sensor Applications

Other Titles
Liquid Metal Enabled Flexible Fiber Microelectrode for Dopamine Sensor Applications
Authors
임태환이소희여상영
Issue Date
Aug-2022
Publisher
한국섬유공학회
Keywords
liquid metal; flexible electrode; electrochemical property; PEDOT; dopamine sensor
Citation
한국섬유공학회지, v.59, no.4, pp 194 - 202
Pages
9
Indexed
KCI
Journal Title
한국섬유공학회지
Volume
59
Number
4
Start Page
194
End Page
202
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/2030
DOI
10.12772/TSE.2022.59.194
ISSN
1225-1089
2288-6419
Abstract
Gallium-based liquid metals have gained significant attention as promisingmaterial platforms for flexible bioelectronics owing to their fluidic behavior but still metallic. However, low electrochemical stability owing to oxidation may limit the use of bioelectronicsthat typically operate under physiological conditions. Here, we developed a liquidmetal core/polymer shell fiber platform for flexibility. Then, nanostructured conductivepoly(3,4-ethylenedioxythiophene) (PEDOT) was encapsulated on the liquid metal surfaceto prevent oxidation. Mechanical property measurement demonstrated that the platformdisplayed high flexibility and low Young’s modulus that could minimize the mechanicalmismatch between the fiber platform and soft human tissues. PEDOT encapsulation on theliquid metal surface offered the fiber platform-based electrode considerably higher electrochemicalproperties, such as lower impedance and higher charge storage capacity. Theimproved electrochemical performance enables the liquid metal-based fiber electrode tobe used for electrochemical dopamine (DA) monitoring. This study demonstrated that thePEDOT structured flexible electrode had a sensitivity of 0.218±0.022 μA/μM and a limit ofdetection of 150 nM. Finally, the electrode could effectively detect DA under a plethora ofbyproducts produced by human metabolism. All the results confirmed the flexibility andremarkable electrochemical properties of the prepared liquid metal-based electrode,opening numerous design opportunities for next-generation liquid metal-based bioelectronics.
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자연과학대학 (의류학과)
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