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Effect of the reduction process on the field emission performance of reduced graphene oxide cathodes

机译:还原过程对石墨烯氧化物阴极场发射性能的影响

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摘要

The electron field emission (FE) properties of reduced graphene oxide (rGO) cathodes produced by three different reduction methods were assessed and compared. In particular, chemical reduction techniques, using either NaOH or KOH as reducing agents, were compared with thermal reduction (TR) methods. X-ray photoelectron spectroscopy (XPS) measurements revealed that different reduction techniques led to different GO lattice parameters. Furthermore, the work function measured with ultraviolet photoelectron spectroscopy (UPS) varied among the samples giving rise to different electron emission characteristics. In particular, the cathodes prepared by the TR method presented the best FE performance, showing a turn-on field of as low as similar to 1.8 V mu m (1) and a field enhancement factor of similar to 1300, which was very close however to that shown by the NaOH-reduced sheets. The worst FE properties were exhibited by the KOH-reduced nanosheets. In light of the above results, the role of the different reduction techniques as well as the final rGO lattice characteristics with regards to the emission performance are evaluated and discussed.
机译:通过三种不同还原方法产生的还原石墨烯(RGO)阴极的电子场发射(Fe)性质进行了评估并进行比较。特别地,使用NaOH或KOH作为还原剂的化学还原技术与热还原(TR)方法进行比较。 X射线光电子能谱(XPS)测量显示不同的减少技术导致不同的GO格参数。此外,用紫外光电子光谱(UPS)测量的功函数在样品中变化,从而产生不同的电子发射特性。特别地,通过TR方法制备的阴极呈现了最佳的FE性能,显示出低于1.8Vμm(1)的开启场,并且与1300相似的场增强因子非常接近到NaoH减少的床单所示。 KOH减少的纳米蛋白酶展示了最糟糕的Fe特性。鉴于上述结果,评估并讨论了不同减少技术的作用以及关于发射性能的最终RGO晶格特性。

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  • 来源
    《RSC Advances》 |2015年第66期|共7页
  • 作者单位

    Fdn Res &

    Technol Hellas Inst Chem Engn &

    High Temp Chem Proc FORTH ICE HT GR-26504 Rionpatras Greece;

    Fdn Res &

    Technol Hellas Inst Elect Struct &

    Laser FORTH IESL GR-70013 Iraklion Crete Greece;

    Ctr Mat Technol &

    Photon GR-71004 Iraklion Crete Greece;

    Ctr Mat Technol &

    Photon GR-71004 Iraklion Crete Greece;

    Fdn Res &

    Technol Hellas Inst Chem Engn &

    High Temp Chem Proc FORTH ICE HT GR-26504 Rionpatras Greece;

    Fdn Res &

    Technol Hellas Inst Chem Engn &

    High Temp Chem Proc FORTH ICE HT GR-26504 Rionpatras Greece;

    Fdn Res &

    Technol Hellas Inst Chem Engn &

    High Temp Chem Proc FORTH ICE HT GR-26504 Rionpatras Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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