广西科学
廣西科學
엄서과학
GUANGXI SCIENCES
2014年
3期
215-219
,共5页
梁先庆%梁水英%韩滔韬%陈用标%郭进
樑先慶%樑水英%韓滔韜%陳用標%郭進
량선경%량수영%한도도%진용표%곽진
氧化石墨烯%水热还原%固/气反应
氧化石墨烯%水熱還原%固/氣反應
양화석묵희%수열환원%고/기반응
graphene oxide%hydrothermal reduction%solid/gas reaction
【目的】对氧化石墨烯的水热还原过程进行系统研究。【方法】采用改进的水热装置,以乙醇为还原剂,通过固/气反应成功实现了水热条件下氧化石墨烯的还原,制备得到石墨烯。通过透射电子显微镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)、X射线近边吸收谱(XANES )和热重分析(TGA)对石墨烯材料的结构和性质进行了测试,探讨水热条件下乙醇蒸汽对氧化石墨烯的还原效果。【结果】研究结果表明,水热环境下的固/气反应还原能够有效地去除氧化石墨烯上的含氧基团,石墨烯的π网格结构得到很好的恢复。还原后的石墨烯材料比氧化石墨烯具有更为优异的热稳定性。【结论】该方法低成本、高效、环保,可用于石墨烯的大规模制备。
【目的】對氧化石墨烯的水熱還原過程進行繫統研究。【方法】採用改進的水熱裝置,以乙醇為還原劑,通過固/氣反應成功實現瞭水熱條件下氧化石墨烯的還原,製備得到石墨烯。通過透射電子顯微鏡(TEM)、X射線衍射(XRD)、X射線光電子能譜(XPS)、X射線近邊吸收譜(XANES )和熱重分析(TGA)對石墨烯材料的結構和性質進行瞭測試,探討水熱條件下乙醇蒸汽對氧化石墨烯的還原效果。【結果】研究結果錶明,水熱環境下的固/氣反應還原能夠有效地去除氧化石墨烯上的含氧基糰,石墨烯的π網格結構得到很好的恢複。還原後的石墨烯材料比氧化石墨烯具有更為優異的熱穩定性。【結論】該方法低成本、高效、環保,可用于石墨烯的大規模製備。
【목적】대양화석묵희적수열환원과정진행계통연구。【방법】채용개진적수열장치,이을순위환원제,통과고/기반응성공실현료수열조건하양화석묵희적환원,제비득도석묵희。통과투사전자현미경(TEM)、X사선연사(XRD)、X사선광전자능보(XPS)、X사선근변흡수보(XANES )화열중분석(TGA)대석묵희재료적결구화성질진행료측시,탐토수열조건하을순증기대양화석묵희적환원효과。【결과】연구결과표명,수열배경하적고/기반응환원능구유효지거제양화석묵희상적함양기단,석묵희적π망격결구득도흔호적회복。환원후적석묵희재료비양화석묵희구유경위우이적열은정성。【결론】해방법저성본、고효、배보,가용우석묵희적대규모제비。
Objective]A systemic investigation was performed to study the reduction process of graphene oxide by hydrothermal method.[Methods]The reduced graphene oxide (RGO)was facilely prepared via a solid/gas reaction of graphene oxide (GO)and ethanol vapor in a self-de-signed hydrothermal system.Ethanol was introduced into the hydrothermal system to improve the reduction.The structure and property of graphene materials were characterized by trans-mission electron microscope (TEM),X-ray diffraction analysis (XRD),X-ray photoelectron spectroscopy (XPS),X-ray absorption near edge structure (XANES)spectroscopy and thermo-gravimetric analysis (TGA).[Results]The oxygen functional groups were effectively removed by the solid/gas interfacial reduction in a hydrothermal process,and theπ-conj ugated frame-work of graphene was effectively recovered.The TGA results show that the thermal stability of RGO is much better than that of GO.[Conclusion]This method offers a low-cost,effective and eco-friendly route for large-scale production of grapheme.