Wettability of graphene and interfacial water structure

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초록

Understanding the wettability of graphene is important for various applications, such as water desalination, energy storage, and catalysis. However, the detailed water hydrogen-bonding structure at the water-graphene interface is not yet fully understood. Using vibrational sum- frequency-generation (VSFG) spectroscopy, we elucidate the water structure at a water-graphene interface. As the number of graphene layers increases, water molecules with dangling OH groups become more populated, indicating the transition from transparency to translucency. We compare the water contact angles on the graphene surfaces with VSFG results, showing an excellent correlation between the water adhesion energy of graphene and the fraction of dangling OH groups estimated from the VSFG spectrum. This observation suggests that the VSFG could be an incisive technique for measuring water's adhesion energy on any spatially confined interface where the water contact angle cannot be measured. We anticipate that the VSFG results will help to elucidate the wettability of low-dimensional materials.

키워드

interfacial water structuremeasurement of water contact angleSDG6: Clean water and sanitationSDG7: Affordable and clean energySDG9: Industry, innovation, and infrastructurevibrational sum-frequency-generation spectroscopyVSFGWCAwettability of grapheneSURFACEORIENTATIONENERGYTRANSPARENCYSPECTROSCOPY
제목
Wettability of graphene and interfacial water structure
저자
Kim, DonghwanKim, EunchanPark, SohyunKim, SeungahMin, Byoung KounYoon, Hyo JaeKwak, KyungwonCho, Minhaeng
DOI
10.1016/j.chempr.2021.03.006
발행일
2021-06-10
유형
Article
저널명
Chem
7
6
페이지
1602 ~ 1614