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Simple room-temperature preparation of high-yield large-area graphene oxide

机译:室温简单制备高产大面积氧化石墨烯

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摘要

Graphene has attracted much attention from researchers due to its interesting mechanical, electrochemical, and electronic properties. It has many potential applications such as polymer filler, sensor, energy conversion, and energy storage devices. Graphene-based nanocomposites are under an intense spotlight amongst researchers. A large amount of graphene is required for preparation of such samples. Lately, graphene-based materials have been the target for fundamental life science investigations. Despite graphene being a much sought-after raw material, the drawbacks in the preparation of graphene are that it is a challenge amongst researchers to produce this material in a scalable quantity and that there is a concern about its safety. Thus, a simple and efficient method for the preparation of graphene oxide (GO) is greatly desired to address these problems. In this work, one-pot chemical oxidation of graphite was carried out at room temperature for the preparation of large-area GO with ~100% conversion. This high-conversion preparation of large-area GO was achieved using a simplified Hummer’s method from large graphite flakes (an average flake size of 500 μm). It was found that a high degree of oxidation of graphite could be realized by stirring graphite in a mixture of acids and potassium permanganate, resulting in GO with large lateral dimension and area, which could reach up to 120 μm and ~8000 μm2, respectively. The simplified Hummer’s method provides a facile approach for the preparation of large-area GO.
机译:石墨烯因其有趣的机械,电化学和电子特性而吸引了研究人员的广泛关注。它具有许多潜在的应用,例如聚合物填料,传感器,能量转换和能量存储设备。基于石墨烯的纳米复合材料受到研究人员的强烈关注。制备此类样品需要大量石墨烯。最近,基于石墨烯的材料已成为基础生命科学研究的目标。尽管石墨烯是非常受欢迎的原材料,但是制备石墨烯的缺点在于,研究人员以可缩放的数量生产这种材料是一个挑战,并且对其安全性存在担忧。因此,非常需要一种简单有效的制备氧化石墨烯(GO)的方法来解决这些问题。在这项工作中,在室温下对锅进行了一锅化学氧化,以制备具有约100%转化率的大面积GO。这种大面积GO的高转化率制备方法是使用简化的Hummer方法从大型石墨薄片(平均薄片尺寸为500μm)中完成的。发现通过在酸和高锰酸钾的混合物中搅拌石墨可以实现石墨的高度氧化,从而产生具有大的横向尺寸和面积的GO,其可以达到120μm和〜8000μm 2 。简化的悍马方法为制备大面积GO提供了一种简便的方法。

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