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Redissolution of Flower-Shaped Graphene Oxide Powder with High Density

机译:花形氧化石墨烯粉的高密度再溶解

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As a sort of scalable precursor of graphene, single layer graphene oxide (GO) has received widespread attention. However, producing dried GO powder which can redisperse in solvents on a molecular level is still under challenge. Here, we have developed a strategy to obtain flower-shaped GO powder (fGO) via a low-temperature spray-drying method. Such GO powder can be redissolved in various solvents including water, with a concentration higher than 3 wt %. The excellent solubility of fGO is totally preserved even after being compressed into a high-density disk (1.26 g/cm(3)). The aqueous solution of fGO can form liquid crystals, which can be assembled into macroscopic graphene papers. By tracking the dissolution process of fGO; we reveal a "swelling dissociation stretching" behavior of the GO particles. For the first time, nuclear magnetic resonance (NMR) solution relaxation is applied to in situ monitor the degree of unfolding (DU) of fGO during dissolution. We discover that the classic polymer dissolution mechanism of linear polymer can extend to GO, a two-dimensional macromolecule. Our findings not only provide a solution for the problems in the transportation, storage and applications of GO, but also open a new way to adjust the microstructure of crumpled GO in large scale.
机译:作为一种可扩展的石墨烯前体,单层氧化石墨烯(GO)受到了广泛的关注。然而,生产可以在分子水平上重新分散在溶剂中的干燥的GO粉末仍然是挑战。在这里,我们制定了一种通过低温喷雾干燥法获得花形GO粉(fGO)的策略。这样的GO粉末可以以高于3重量%的浓度重新溶解在包括水的各种溶剂中。即使将fGO压缩成高密度磁盘(1.26 g / cm(3)),也能完全保留其极好的溶解性。 fGO的水溶液可以形成液晶,可以将其组装成宏观的石墨烯纸。通过跟踪fGO的溶解过程;我们揭示了GO颗粒的“溶胀解离拉伸”行为。首次将核磁共振(NMR)溶液弛豫应用于原位监测溶解过程中fGO的展开程度(DU)。我们发现线性聚合物的经典聚合物溶解机制可以扩展到GO,二维高分子。我们的发现不仅为GO的运输,存储和应用中的问题提供了解决方案,而且为大规模调整皱缩的GO的微观结构开辟了一条新途径。

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