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Diffusion driven layer-by-layer assembly of graphene oxide nanosheets into porous three-dimensional macrostructures

机译:扩散驱动的氧化石墨烯纳米片的逐层组装成多孔三维宏观结构

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Despite recent progress in preparing numerous types of nanosheets, it remains a difficult challenge to assemble the tiny building blocks into functional macroscale architectures suitable for practical applications. Here we introduce a diffusion driven layer-by-layer assembly process and demonstrate its application for the construction of graphene oxide sheets into various three-dimensional structures. This process involves complexation of the negatively charged graphene oxide sheets and positively charged branched polyethylenimine at a given interface. We find that the diffusion of branched polyethylenimine molecules allows the complex to continuously grow into foam-like frameworks with tunable porosities. Furthermore, the assembly process is quite robust and can be utilized in various configurations such as to create free-standing architectures with tailored shapes or patterned films on a substrate. With such useful features, we believe that this technique may serve as a valuable tool for the assembly of nanomaterials.
机译:尽管最近在制备多种类型的纳米片方面取得了进展,但是将微小的构件组装成适合实际应用的功能性宏观体系结构仍然是一个艰巨的挑战。在这里,我们介绍了扩散驱动的逐层组装过程,并演示了其在将氧化石墨烯片材构建成各种三维结构中的应用。该过程涉及在给定界面处带负电的氧化石墨烯片和带正电的支链聚乙烯亚胺的络合。我们发现,支链聚乙烯亚胺分子的扩散使复合物能够连续增长为具有可调孔隙率的泡沫状骨架。此外,组装过程非常坚固并且可以用于各种配置中,例如以在基板上创建具有定制形状或图案化膜的独立式建筑。凭借这些有用的功能,我们相信该技术可以作为组装纳米材料的有价值的工具。

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