Facile Fabrication of Graphene Membranes with Readily Tunable Structures

石墨烯 材料科学 制作 化学工程 电导率 超级电容器 氧化石墨烯纸 电极 纳米技术 电容 复合材料 生物 工程类 医学 遗传学 病理 物理化学 化学 替代医学
作者
Ge Shi,Qingshi Meng,Zhiheng Zhao,Hsu‐Chiang Kuan,Andrew Michelmore,Jun Ma
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:7 (25): 13745-13757 被引量:44
标识
DOI:10.1021/am5091287
摘要

Advanced membranes that combine mechanical robustness with fast permeation are crucial to many applications such as water purification, ions selectivity, and gas separation. Graphene sheets offer a promising opportunity to fabricate thin, high-flux, and pressure-endurable membranes because of their unique 2D morphology, oxidizable surface, and electrical conductivity. We herein report a highly effective yet simple approach to the fabrication of graphene membranes featuring controllable oxidation degrees and thus tunable structures and properties. The graphene sheets comprise a single or a few layers with a lateral dimension of 50-100 nm; their C/O ratios can be manipulated from 4.1 for graphene with a low degree of oxidation (low-oxidation graphene) to 2.5 for medium-oxidation graphene to 1.3 for high-oxidation graphene, by controlling the proportion of phosphoric acid during the 60 min fabrication. Fabricated by simple vacuum filtration, the membranes exhibited various water flux from 200.0 to 20.0 L/m(2)·h·bar at 3 bar of pressure and mechanical robustness (Young's modulus can be up to 20 GPa and tensile strength to 100 MPa). When these membranes were used as electrodes for supercapacitors, specific capacitances of 58.8 F/g and 23.5 F/cm(3) were recorded for the low-oxidation graphene membrane at 1 A/g by a two-electrode configuration; the capacity values retained ∼95% after 800 cycles; the high capacitance would be caused by moderate wettability and high electrical conductivity.
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