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Tuneable interlayer spacing self-assembling on graphene oxide-framework membrane for enhance air dehumidification

机译:石墨烯氧化物骨架膜上可调调谐的层间间距用于增强空气除湿

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摘要

Isothermal-based air dehumidification results in energy problems, low water vapour permeability and poor selectivity. Graphene oxide framework (GOF) membranes exhibit remarkable advantages in effective air dehumidification. In this work, different crosslinking agents, including glyoxal (GLX), oxalic acid (OXA) and ethylenediamine (EDA), were employed to tune the properties of GOF membranes through the casting knife technique. The physicochemical properties of the as-prepared membranes were investigated by using various techniques. The 2D arrangement of GO-based membranes ensured the frictionless nano-channels with an efficient flow rate and storage of water along with chemical interaction while hydrophilic groups on the GO surface. However, crosslinking restricted the mobility between consecutive GO layers, and the free volume and pore size became tuneable in the crosslinking structure. Given its capacity for low energy-efficient air dehumidification, the GLX-cross-linked GO membrane exhibited an excellent selectivity value of 2.8 x 10(6), and the less energy-consuming stability performance lasted for 120 h. These results indicate that the GLX-cross-linked GO membrane is suitable for practical applications.
机译:基于等温的空气除湿导致能量问题,低水蒸气渗透性和选择性差。石墨烯氧化物框架(GOF)膜在有效空气除湿中表现出显着的优势。在这项工作中,使用不同的交联剂,包括乙二醛(GLX),草酸(OXA)和乙二胺(EDA),以通过铸造刀技术调节GOF膜的性质。通过使用各种技术研究了由制备的膜的物理化学性质。 Go的膜的2D布置确保了无摩擦的纳米通道,其具有有效的流速和水的储存以及化学相互作用,而在去表面上的亲水基团。然而,交联限制了连续去层之间的迁移率,并且在交联结构中可调谐自由体积和孔径。鉴于其低节能空气除湿能力,Glx交联的去膜的优异选择性值为2.8×10(6),持续的稳定性表现较低的持续性能持续120小时。这些结果表明Glx交联的去膜适用于实际应用。

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