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Effect of O-2(+), H-2(+) + O-2(+), and N-2(+) + O-2(+) ion-beam irradiation on the field emission properties of carbon nanotubes

机译:O-2(+),H-2(+)+ O-2(+)和N-2(+)+ O-2(+)离子束辐照对碳纳米管场发射特性的影响

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摘要

The effect of O-2(+), H-2(+) + O-2(+), and N-2(+) + O-2(+) ion-beam irradiation of carbon nanotubes (CNTs) films on the chemical and electronic properties of the material is reported. The CNTs were grown by the chemical vapor deposition technique (CVD) on silicon TiN coated substrates previously decorated with Ni particles. The Ni decoration and TiN coating were successively deposited by ion-beam assisted deposition (IBAD) and afterwards the nanotubes were grown. The whole deposition procedure was performed in situ as well as the study of the effect of ion-beam irradiation on the CNTs by x-ray photoelectron spectroscopy (XPS). Raman scattering, field-effect emission gun scanning electron microscopy (FEG-SEM), and field emission (FE) measurements were performed ex situ. The experimental data show that: (a) the presence of either H(2)(+)or N-2(+) ons in the irradiation beam determines the oxygen concentration remaining in the samples as well as the studied structural characteristics; (b) due to the experimental conditions used in the study, no morphological changes have been observed after irradiation of the CNTs; (c) the FE experiments indicate that the electron emission from the CNTs follows the Fowler-Nordheim model, and it is dependent on the oxygen concentration remaining in the samples; and (d) in association with FE results, the XPS data suggest that the formation of terminal quinone groups decreases the CNTs work function of the material. (C) 2011 American Institute of Physics. [doi: 10.1063/1.3593269]
机译:碳纳米管(CNTs)膜的O-2(+),H-2(+)+ O-2(+)和N-2(+)+ O-2(+)离子束辐照的效果报告了材料的化学和电子性能。 CNT通过化学气相沉积技术(CVD)在预先用Ni颗粒装饰的硅TiN涂层基板上生长。通过离子束辅助沉积(IBAD)依次沉积Ni装饰和TiN涂层,然后生长纳米管。整个沉积过程均在原位进行,并通过X射线光电子能谱(XPS)研究了离子束辐照对CNT的影响。拉曼散射,场效应发射枪扫描电子显微镜(FEG-SEM)和场发射(FE)测量均在非原位进行。实验数据表明:(a)照射束中H(2)(+)或N-2(+)的存在决定了样品中残留的氧浓度以及所研究的结构特性; (b)由于研究中使用的实验条件,在CNT照射后未观察到形态变化; (c)有限元实验表明,碳纳米管的电子发射遵循Fowler-Nordheim模型,并且取决于样品中残留的氧浓度; (d)与有限元分析结果相关,XPS数据表明末端醌基的形成降低了材料的CNTs功函。 (C)2011美国物理研究所。 [doi:10.1063 / 1.3593269]

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