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首页> 外文期刊>ACS nano >Controlling Interlayer Spacing of Graphene Oxide Membranes by External Pressure Regulation
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Controlling Interlayer Spacing of Graphene Oxide Membranes by External Pressure Regulation

机译:通过外部压力调节控制石墨烯膜的层间间距

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Graphene oxide (GO) membranes have been attracting numerous attention due to their impressive performance in various applications, especially in water purification. However, because the swelling in water and polar organic solvents causes the increase of interlayer channels, GO membranes usually possess inferior rejection for subnanometer-sized molecules. How to control the transport channels of GO membranes at angstrom level is a significantly scientific and practical issue. Herein, a concept of external pressure regulation (EPR) is reported for restraining GO swelling and controlling its interlayer spacing precisely. Since anisotropic GO films only swell at vertical direction, the interlayer channels can be manipulated by externally unidirectional reverse force. Based on this concept, an EPR system with GO membranes is designed for water desalination by adjusting the external pressure that has high resolution. In cross-flow filtration, the compressed GO membranes show high KCl, NaCl, and CaCl2 rejections of 94%, 97%, and 98%, respectively, accompanied by large water permeance up to 25 L m(-2) h(-1) under low feed pressure of 2 bar, despite the fact that the semi-free spatial swelling of ultrathin GO layer above the substrate pores can deteriorate salt rejection. Our work provides a straightforward physical strategy to adjust the interlayer spacing of the membranes fabricated by two-dimensional nanosheets for achieving desired filtration capacity.
机译:由于它们在各种应用中的令人印象深刻的性能,尤其是水净化,石墨烯氧化物(GO)膜一直在吸引许多关注。然而,由于水和极性有机溶剂中的溶胀导致层间通道的增加,所以去膜通常具有亚腔轮尺寸分子的劣脂。如何控制埃赫斯特罗姆水平的去膜的运输渠道是一个显着的科学和实际的问题。这里,报告了外部压力调节(EPR)的概念,用于抑制肿胀并精确地控制其层间间距。由于各向异性去膜仅在垂直方向上膨胀,因此可以通过外部单向反向力操纵层间通道。基于该概念,通过调节具有高分辨率的外部压力,设计具有GO膜的EPR系统。在交叉流过滤中,压缩的去膜分别显示出高达25μm(-2)H的大型水渗透的94%,97%和98%的高kCl,NaCl和CaCl 2排斥反应(-2) )在2巴的低馈电压力下,尽管超薄层孔的半自由空间肿胀料孔可以劣化。我们的作品提供了一种直接的物理策略,可调节由二维纳米片制造的膜的层间间隔,以实现所需的过滤能力。

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