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SATURATED EMISSION FROM CARBON NANOTUBES

机译:碳纳米管的饱和排放

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摘要

We have measured emission currents and energy spectra produced by gated carbon nanotube field emitter arrays. The currents and spectra change after exposing the arrays to water vapor or and hydrogen. At low currents, we find the emission spectra are narrow and increase in intensity at all energies. However the spectral shape is broader than predicted by free electron theory and the peak intensity does not increase as quickly as theory predicts. At high currents the emission completely saturates at energies just below E_F. We interpret this behavior as a sign of field penetration into the nanotubes. The saturated energy range increases after exposing the arrays to hydrogen, indicating that adsorbed hydrogen reduces the electron density within the nanotube. Adsorbed water molecules have the opposite effect, apparently donating charge to the nanotubes. Fowler-Nordheim plots of the emission current sometimes do not produce straight lines, particularly when water vapor is adsorbed. The non-linear behavior does not correlate with the saturation effect.
机译:我们已经测量了由门控碳纳米管场发射器阵列产生的发射电流和能谱。将阵列暴露于水蒸气或氢气后,电流和光谱会发生变化。在低电流下,我们发现发射光谱很窄,并且在所有能量下强度都增加了。但是,光谱形状比自由电子理论所预测的要宽,并且峰强度不会像理论所预测的那样迅速增加。在大电流下,发射在能量刚好低于E_F时完全饱和。我们将此行为解释为电场渗透到纳米管中的迹象。在将阵列暴露于氢后,饱和能量范围增大,表明吸附的氢降低了纳米管内的电子密度。吸附的水分子具有相反的作用,显然是将电荷提供给了纳米管。发射电流的Fowler-Nordheim图有时不会产生直线,尤其是在吸收水蒸气时。非线性行为与饱和效应不相关。

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