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Residual Gas Adsorption and Desorption in the Field Emission of Titanium-Coated Carbon Nanotubes

机译:钛涂层碳纳米管在场发射中的残留气体吸附和解吸

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摘要

Titanium (Ti)-coated multiwall carbon nanotubes (CNTs) emitters based on the magnetron sputtering process are demonstrated, and the influences of modification to CNTs on the residual gas adsorption, gas desorption, and their field emission characteristic are discussed. Experimental results show that Ti nanoparticles are easily adsorbed on the surface of CNTs due to the “defects” produced by Ar+ irradiation pretreatment. X-ray photoelectron spectroscopy (XPS) characterization showed that Ti nanoparticles contribute to the adsorption of ambient molecules by changing the chemical bonding between C, Ti, and O. Field emission of CNTs coated with Ti nanoparticles agree well with the Fowler–Nordheim theory. The deviation of emission current under constant voltage is 6.3% and 8.6% for Ti-CNTs and pristine CNTs, respectively. The mass spectrometry analysis illustrated that Ti-coated CNTs have a better adsorption capacity at room temperature, as well as a lower outgassing effect than pristine CNTs after degassing in the process of field emission.
机译:演示了基于磁控溅射工艺的涂有钛(Ti)的多壁碳纳米管(CNTs)发射器,并讨论了改性对CNTs对残余气体吸附,气体解吸及其场发射特性的影响。实验结果表明,由于Ar + 辐照预处理产生的“缺陷”,Ti纳米颗粒易于吸附在CNT的表面。 X射线光电子能谱(XPS)表征表明,Ti纳米颗粒通过改变C,Ti和O之间的化学键而有助于环境分子的吸附。涂有Ti纳米颗粒的CNT的场发射与Fowler-Nordheim理论非常吻合。 Ti-CNT和原始CNT在恒定电压下的发射电流偏差分别为6.3%和8.6%。质谱分析表明,在场发射过程中,经过脱气处理后,镀钛的碳纳米管在室温下具有更好的吸附能力,并且比原始碳纳米管具有更低的脱气效果。

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