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Tuning Optical Properties of Graphene Oxide under Compressive Strain Using Wet Ball Milling Method

机译:湿式球磨法在压缩应变下调节氧化石墨烯的光学性质

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We report on the effect of compressive stress on the optical properties of graphene oxide using a wet ball milling technique. For this purpose, graphene oxide was prepared using the modified Hummer’s method and subsequently processed with wet ball milling. X-ray diffraction infers a peak at 9.655°?which is the allowed reflection for the graphene oxide. The Williamson-Hall method is used to quantify the strain on the 10 hrs and 20 hrs ball milled graphene oxide samples and is found to be 4.2% and 4.8% respectively. Although we applied strain on the graphene oxide, it actually helped to reduce the defects which are confirmed by the intensity drop-off of D-peak in Raman spectroscopy. Indeed there exists a band gap alteration of 0.14 eV for an applied compressive strain of ~4.8%, hinting that the reduction in oxygen functional groups and the same is confirmed with the Fourier Transform Infrared Spectroscopy (FTIR). The present results would be helpful in developing graphene oxide based flexible memories and optoelectronic devices.
机译:我们使用湿式球磨技术报告了压缩应力对氧化石墨烯的光学性能的影响。为此,使用改良的Hummer方法制备了氧化石墨烯,随后进行了湿式球磨处理。 X射线衍射推断出在9.655°的峰,这是氧化石墨烯的允许反射。 Williamson-Hall方法用于量化10个小时和20个小时球磨氧化石墨烯样品的应变,发现分别为4.2%和4.8%。尽管我们在氧化石墨烯上施加了应变,但实际上有助于减少了拉曼光谱中D峰强度下降所证实的缺陷。实际上,对于约4.8%的压缩应变,带隙变化为0.14 eV,这暗示氧官能团的减少以及傅立叶变换红外光谱(FTIR)的确证。目前的结果将有助于开发基于氧化石墨烯的柔性存储器和光电器件。

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