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Facile synthesis of graphene oxide in a Couette-Taylor flow reactor

机译:在Couette-Taylor流动反应器中轻松合成氧化石墨烯

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摘要

A practical approach to bulk-scale graphene-based materials is critically important for their use in the industrial applications. Here, we describe a facile method to prepare graphite oxide (GO) using a Couette-Taylor flow reactor for the oxidation of bulk graphite flakes. We found that the turbulent Couette-Taylor flow in the reactor could be engineered to result in the efficient mixing and mass transfer of graphite and oxidizing agents (KMnO4 and H2SO4), thereby improving the efficiency of graphite into GO. As compared to the standard Hummers' method, higher fraction of a single- and few-layer graphene oxide (G-O) can be yielded in a dramatically shortened reaction time, by optimizing the processing parameters, we have shown that similar to 93% of G-O yield could be achieved within 60 min of reaction time. This method also allowed for the in-situ functionalization of G-O with metal oxide nanoparticles to give a nanoparticle-decorated G-O hybrid material. Our method for facile and large-scale production of graphite oxide may find utility in a range of applications including energy storage, composites and supporting frameworks of catalyst. (C) 2014 Elsevier Ltd. All rights reserved.
机译:大规模制备基于石墨烯的材料的实用方法对其在工业应用中的使用至关重要。在这里,我们描述了一种使用Couette-Taylor流动反应器来氧化大量石墨薄片的简便方法来制备氧化石墨(GO)。我们发现可以对反应器中的湍流库埃特-泰勒流进行工程设计,以实现石墨和氧化剂(KMnO4和H2SO4)的有效混合和传质,从而提高石墨进入GO的效率。与标准的Hummers方法相比,通过优化工艺参数,可以显着缩短反应时间,从而获得更高比例的单层和几层氧化石墨烯(GO),我们发现GO的比例接近93%反应时间60分钟内即可达到收率。该方法还允许用金属氧化物纳米颗粒原位官能化G-O,得到装饰有纳米颗粒的G-O杂化材料。我们用于大规模生产氧化石墨的方法可能会在一系列应用中找到实用性,包括能量存储,复合材料和催化剂的支撑框架。 (C)2014 Elsevier Ltd.保留所有权利。

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