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Influence of External Heating Rate on the Structure and Porosity of Thermally Exfoliated Graphite Oxide

机译:外部加热速率对热剥离石墨氧化物结构和孔隙率的影响

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摘要

Fast external heating rates in graphite oxide thermal exfoliation have been reported to be advantageous for generating high surface area graphene-based materials for a variety of applications. The study yields the surprising result that the surface area and porosity developed in reduced graphite oxide under some conditions are independent of instrument-set external heating rates. The true “total” heating rate experienced by the sample is shown to be the sum of the external rate and the local self-heating rate associated with the exothermicity of graphite oxide exfoliation, and under many conditions, the local self-heating contribution dominates. In these instances, increasing external heating rate does not increase the total rate, improve exfoliation degree or enhance surface area. These results are important for optimizing the conditions for fabrication of reduced graphene oxide with tailored properties.
机译:据报道,在氧化石墨热剥离中快速的外部加热速率对于产生用于各种应用的高表面积基于石墨烯的材料是有利的。该研究得出令人惊讶的结果,即在某些条件下还原的氧化石墨中形成的表面积和孔隙率与仪器设定的外部加热速率无关。样品所经历的真实的“总”加热速率是外部速率和与氧化石墨剥落的放热相关的局部自加热速率的总和,并且在许多条件下,局部自加热贡献占主导地位。在这些情况下,增加外部加热速率不会增加总速率,不会改善剥落程度或增加表面积。这些结果对于优化具有定制性能的还原性氧化石墨烯的制造条件非常重要。

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