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Anionic Electrochemical Exfoliation of Few-Layer Graphene Nano-Sheets: An Emphasis on Characterization

机译:几层石墨烯纳米片的阴离子电化学剥离:重点是表征

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Graphene, the most unique member of carbon family has fuelled a huge interest across the globe with its superior mechanical, chemical, optical and electronic properties. It has opened enormous avenues for humankind in terms of different applications. Since its discovery in 2004, people have tried various techniques to extract graphene, such as mechanical exfoliation, chemical exfoliation, epitaxial growth, CVD (chemical vapour deposition) etc. However, the above methods are not optimal for mass production, neither are they simple and cost effective. The present work highlights synthesis of graphene through electrochemical approach and its subsequent characterization. Pyrolytic graphite is subjected to intercalation of two different concentrations of HNO_3 electrolyte. XRD, FESEM and TEM were utilised to understand the structure and morphology of the obtained few-layer graphene nanosheets (FLGNs). Scanning probe spectroscopy is a useful technique for understanding the morphological structure of a sample at atomic level. Authors have utilised AFM which shows the thickness of the FLGNs to be in the range of 5-6 nm. STM studies of graphene nanosheets revealed atomic scaled periodicity and atomic flatness.
机译:石墨烯,最独特的碳家族成员促进了全球巨大的兴趣,具有优越的机械,化学,光学和电子特性。它在不同的应用方面开辟了人类的巨大途径。自2004年发现以来,人们试图提取石墨烯的各种技术,例如机械去角质,化学剥离,外延生长,CVD(化学气相沉积)等,上述方法对批量生产而言是不适的,它们也不是它们简单和成本效益。本作通过电化学方法突出石墨烯的合成及其随后表征。对两种不同浓度的HNO_3电解质进行热解石墨进行嵌入。利用XRD,FESEM和TEM来了解所获得的几层石墨烯纳米片(FLGNS)的结构和形态。扫描探针光谱是一种理解原子水平样本的形态结构的有用技术。作者使用了AFM,其显示FLGN的厚度在5-6nm的范围内。石墨烯纳米片的STM研究显示出原子缩放周期性和原子平整度。

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