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Reduction of graphene oxide - a comprehensive electrochemical investigation in alkaline and acidic electrolytes

机译:氧化石墨烯的还原-碱性和酸性电解质的全面电化学研究

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Graphene synthesized by the reduction of graphene oxide (GO) features in a myriad of applications ranging from sensors to batteries and catalysts to dye-sensitized solar cells. The exceptional physical and electrochemical properties of graphene originate from the presence of several residual functional groups and the non-stoichiometry in its structure. But, investigating the evolution of graphene from GO has been a daunting task. In this manuscript, simple electrochemical methods are reported to characterize GO subjected to thermal, electrochemical, and chemical reduction. The electrochemical features of these samples along with their FTIR spectra and XRD patterns help to identify the functional groups and provide compelling evidence for the transformation among them during the reduction of GO. The redox features of the voltammograms suggest the conversion of epoxides to carbonyl, carbonyl to carboxylic acid groups, and their subsequent removal with potential cycling. Thermal treatment of GO in the range of 80-150 degrees C causes the conversion of some of the epoxides to carbonyls and removal of water content. At the same time, epoxides are more prevalent in chemically reduced GO. The double layer capacitance - one of the figure of merits that distinguishes graphene from other carbon allotropes - gives an indication of the reduced graphene oxide content in the sample. Thus, electrochemical characterization sheds significant light onto the nature of oxygen moieties in non-heat-treated GO (nHT-GO), thermally reduced GO (t-GO), chemically reduced GO (c-RGO) and electrochemically reduced GO (e-RGO), besides explaining the range of reported electrochemical capacitance.
机译:通过还原氧化石墨烯(GO)合成的石墨烯在从传感器到电池,从催化剂到染料敏化太阳能电池的无数应用中都有特色。石墨烯出色的物理和电化学性能源自几个残留官能团的存在以及其结构中的非化学计量。但是,研究石墨烯从GO的演变一直是一项艰巨的任务。在该手稿中,报告了简单的电化学方法来表征经过热,电化学和化学还原的GO。这些样品的电化学特征及其FTIR光谱和XRD图谱有助于鉴定官能团,并为在GO还原过程中它们之间的转化提供了令人信服的证据。伏安图的氧化还原特征表明环氧化物转化为羰基,羰基转化为羧酸基,随后通过潜在的循环将其除去。 GO在80-150摄氏度的范围内进行热处理会导致某些环氧化物转化为羰基化合物并除去水分。同时,环氧化物在化学还原的GO中更为普遍。双层电容是将石墨烯与其他碳同素异形体区别开的优点之一,它表明了样品中氧化石墨烯含量的降低。因此,电化学表征为未热处理的GO(nHT-GO),热还原的GO(t-GO),化学还原的GO(c-RGO)和电化学还原的GO(e- RGO),除了解释报告的电化学电容的范围。

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