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Size fractionation of graphene oxide sheets assisted by circular flow and their graphene aerogels with size-dependent adsorption

机译:石墨烯片的尺寸分馏由圆形流动及其石墨烯气凝胶具有尺寸依赖性吸附的辅助氧化物片

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Lateral dimensions of graphene oxide (GO) sheets are acknowledged to critically influence the properties of macroscopic GO-based materials. However, restricted by current size fractionation technologies, it is still a great challenge to obtain GO sheets in a relatively narrow size distribution by a simple method. Here, we introduce a facile size fractionation of GO sheets assisted by circular flow. With the help of hydrogen gas (H _(2) ) bubbles generated from a metallic replacement reaction, continuous turbulence forms a circular flow in a special tubular container to make it possible to fractionate different sized GO sheets. By using this process, crude GO (CGO) sheets can be facilely separated into three size ranges, namely LGO (>20 μm), MGO (2–20 μm) and SGO (<2 μm). Another advantage is that the separation approach can simultaneously remove residual graphite oxides. Furthermore, graphene aerogels made of LGO precursors (LGA) show better absorptivity than those of CGO, MGO and SGO precursors.
机译:横向尺寸的石墨烯(GO)片材被承认,以重视基于宏观的基础材料的性质。然而,受电流大小分馏技术的限制,通过简单的方法在相对狭窄的尺寸分布中获取去纸仍然是一个巨大的挑战。在这里,我们介绍了通过圆形流动辅助的去纸的容易尺寸分馏。借助于金属替换反应产生的氢气(H _(2))气泡,连续湍流在特殊的管状容器中形成圆形流动,以使其可以分馏不同尺寸的去板。通过使用该过程,粗DA(CGO)片材可以将其施入三个尺寸范围,即LGO(>20μm),MgO(2-20μm)和SgO(<2μm)。另一个优点是分离方法可以同时去除残留的石墨氧化物。此外,由LGO前体(LGA)制成的石墨烯Aerogels表现出比CGO,MgO和Sge前体的吸收率更好。

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