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액체-고체 접촉대전을 위한 PET 기판 기반 ODA/PDMS딥 코팅 제조 및 평가Synthesis and Evaluation of Superhydrophobic ODA/PDMSDip Coating on PET for Liquid-Solid Contact Electrification

Other Titles
Synthesis and Evaluation of Superhydrophobic ODA/PDMSDip Coating on PET for Liquid-Solid Contact Electrification
Authors
박선영강현규변도영조대현
Issue Date
2021
Publisher
한국트라이볼로지학회
Keywords
wettability; superhydrophobicity; contact angle; dip coating; triboelectric nanogeneroator(; 젖음성; 초소수성; 접촉각; 딥 코팅; 마찰전기 나노발전기
Citation
한국트라이볼로지학회지, v.37, no.2, pp 71 - 76
Pages
6
Indexed
KCI
Journal Title
한국트라이볼로지학회지
Volume
37
Number
2
Start Page
71
End Page
76
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/5375
DOI
10.9725/kts.2021.37.2.71
ISSN
2713-8011
Abstract
As opposed to using fossil fuels, we need to use eco-friendly resources such as sunlight, raindrops and wind to produce electricity and combat environmental pollution. A triboelectric nanogenerator (TENG) is a device that converts mechanical energy into electricity by inducing repetitive contact and separation of two dissimilar materials. During the contact and separation processes, electron flow occurs owing to a change in electric potential of the contacting surface caused by contact electrification and electrostatic induction mechanisms. A solid-solid contact TENG is widely known, but it is possible to generate electricity via liquid-solid contact. Therefore, by designing a hydrophobic TENG, we can gather electricity from raindrop energy in a feasible manner. To fabricate the superhydrophobic surface of TENGs, we employ a dip coating technique to synthesize an octadecylamine (ODA)- and polydimethylsiloxane (PDMS)-based coating on polyethylene terephthalate (PET). The synthesized coating exhibits superhydrophobicity with a contact angle greater than 150° and generates a current of 2.2 μA/L while water droplets fall onto it continuously. Hence, we prepare a box-type TENG, with the ODA/PDMS coating deposited on the inside, and place a 1.5 mL water droplet into it. Resultantly, we confirm that the induced vibration causes continuous impacts between the ODA/PDMS coating and the water, generating approximately 100 pA for each impact.
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융합기술공과대학 > Division of Mechatronics Engineering > Journal Articles

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Cho, Dae Hyun
IT공과대학 (메카트로닉스공학부)
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