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Two-dimensional membranes with precisely controlled graphitic nanoconduits for ultrafast water vapour transport
- Yoo, Seung Yeon;
- Park, Inho;
- Shin, Jae Eun;
- Jang, Jiwoo;
- Kwon, Hyeok Jin;
- ... Park, Ho Bum;
- 외 3명
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Graphene oxide (GO) has emerged as a prominent membrane material due to its potential for precise gas and liquid separations enabled by surface modification and channel optimisation. Here, we present tunable graphitic nanofluidic channels-containing GO (gGO) membranes, characterised by a continuous sp2 hybridised carbon lattice distributed across 35 %–72 % of their structure. This architecture enables exceptional water vapour permeability through a Fickian diffusion mechanism, contrasting the non-Fickian transport typically observed in conventional GO membranes. Our findings demonstrate ultrafast water vapour transport through well-defined hydrophobic nanofluidic channels, achieving enhanced water vapour/N2 selectivity. Utilising scalable, top-down multi-scale simulations based on the inverse Ising method, we elucidate the critical role of graphitic sp2 domains in optimising selective diffusion pathways for water molecules. The resulting gGO-based thin-film composite membranes deliver state-of-the-art water vapour/gas separation applications, showcasing their potential for advanced humidification or dehumidification applications.
키워드
- 제목
- Two-dimensional membranes with precisely controlled graphitic nanoconduits for ultrafast water vapour transport
- 저자
- Yoo, Seung Yeon; Park, Inho; Shin, Jae Eun; Jang, Jiwoo; Kwon, Hyeok Jin; Núñez, Marcel; Gu, Geun Ho; Kim, Hyo Won; Park, Ho Bum
- 발행일
- 2025-09
- 유형
- Article
- 권
- 520
- 페이지
- 1 ~ 12