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Analysis of Chemical Structure of Reduced Graphite Oxide Synthesized in Different Reduction Atmospheres

机译:分析在不同还原大气中合成的还原石墨氧化石墨的化学结构

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In this work, a comparative study of thermally reduced graphite oxide (rGO) materials prepared by thermal exfoliation and reduction of graphite oxide (GO) at the temperature of 300°C and 600°C under different atmospheres (air, N2, Ar, vacuum and H2) was investigated through kinds of characterizations. The evaluation of chemical structure and quality of the rGOs by these various atmospheres is of high importance and is attempted side-by-side for the first time in this paper. The order of C/O ratio of rGOs obtained at 600°C is that HH-rGO> HV-rGO>HAr-rGOHN-rGO>HA-rGO, whereas the effect of atmospheres on the rGOs obtained at 300°C is not obvious. HH-rGO possesses better restoration of π-conjugated structure and the increased average size of sp2 carbon domains compared with other rGOs. rGOs with higher reduction degree result in the aggregation of rGO nanosheets and closer to graphite structure. TGA results proved the order of thermal stability is that HH-rGO>HV-rGO>HAr-rGOHN-rGO>HA- rGO. Additionally, HH-rGO could be easily exfoliated to few- layer nanosheets compared with others according to the AFM measurement. We believe that the findings will deepen our understanding of graphene obtained via thermal exfoliation and reduction method.
机译:在这项工作中,通过在不同气氛(空气,N2,AR,真空吸尘器)(Air,n2,ar,真空吸尘器)下,在300°C和600°C的温度下,通过热去角质和减少氧化石墨(GO)制备的热还原的石墨氧化物(RGO)材料的比较研究和H2)通过各种特征研究。通过这些各种气氛对RGO的化学结构和质量的评估非常重要,并且在本文中首次并排尝试。在600°C下获得的RGO的C/O比顺序是HH-RGO> HV-RGO> HAR-RGOHN-RGO> HA-RGO,而大气对在300°C下获得的RGO的影响并不明显。与其他RGO相比,HH-RGO具有更好地恢复π共轭结构和SP2碳结构域的平均大小。具有较高还原度的RGO会导致RGO纳米片的聚集,并更接近石墨结构。 TGA结果证明了热稳定性的顺序是HH-RGO> HV-RGO> HAR-RGOHN-RGO> HA-RGO。此外,根据AFM测量,与其他纳米片相比,HH-RGO很容易被剥落到几层纳米片中。我们认为,这些发现将加深我们对通过热剥落和还原方法获得的石墨烯的理解。

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