石墨烯
纳滤
氧化物
材料科学
渗透
膜
化学工程
石墨烯纳米带
过滤(数学)
纳米复合材料
堆积
纳米技术
氧化石墨烯纸
有机化学
化学
渗透
生物化学
统计
工程类
冶金
数学
作者
Kyeong Min Cho,Hyeong-Jin Lee,Yoon Tae Nam,Jin Hyoung Kim,Chansol Kim,Kyoung Min Kang,Claudio Adrian Ruiz Torres,Dae Woo Kim,Hee‐Tae Jung
标识
DOI:10.1021/acsami.9b09037
摘要
In this study, reduced graphene oxide (rGO) and graphene oxide nanoribbons (GONRs) are used to fabricate a composite membrane that exhibits ultrafast water permeance (312.8 L m–2 h–1 bar–1) and precise molecular separation (molecular weight cutoff: 269 Da), which surpass the upper bound of previously reported polymer and graphene-based nanofiltration membranes. As two-dimensional GONR exhibits a width on the scale of nanometers, its nanochannels can be enlarged without hindering the stacking of rGO. Moreover, abundant oxygen-containing groups on the edge and surface of GONR enhance the electrostatic interactions between the filtered molecules and the membrane nanochannel. By the synergistic effect, rejection and water flux are considerably increased. Owing to the chemically stable nature of rGO, the composite membrane is highly stable in aqueous media (from acidic to alkaline) and is recyclable during repeated filtration tests.
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