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논문 기본 정보

자료유형
학술저널
저자정보
Jang Sung Tae (Department of Energy Resources and Chemical Engineering , Kangwon National University) Kim Seo Jin (Department of Energy Resources and Chemical Engineering , Kangwon National University) Kim Jueun (Department of Energy Resources and Chemical Engineering , Kangwon National University) Yoon Eun Seop (Department of Energy Resources and Chemical Engineering, Kangwon National University, Samcheok, 25913, Republic of Korea) 권오석 (성균관대학교) Lee Kyoung G. (National Nanofab Center, Center for Nano Bio Development) 최봉길 (강원대학교)
저널정보
한국바이오칩학회 BioChip Journal BioChip Journal Vol.18 No.2
발행연도
2024.6
수록면
300 - 309 (10page)
DOI
10.1007/s13206-024-00150-6

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Humidity sensors are used in various applications to provide suitable environmental conditions. High-performance humid- ity sensors require highly sensitive active sites to detect water molecules. In this study, a nanopillar-array-based electrode (NAE) was developed, which has a large specifi c surface area and is applicable to various humidity-sensing materials. The NAE, which was fabricated via photo-lithography and soft lithography, exhibited superior electrochemical capacitance and diff usion behavior compared to fl at electrodes. The NAE-based humidity sensor exhibited a high sensitivity and linearity, low hysteresis error, and long-term stability for a duration of 25 days. Moreover, the humidity sensor maintained a consistent impedance signal in a mechanically bent state. Furthermore, the real-time monitoring performance of the humidity sensor was demonstrated by measuring humidity changes during plant transpiration.

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