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Applied Surface Science A Comparative Study Of Thermionic Emission From Vertically Grown Carbon Nanotubes And Tungsten Cathodes

机译:应用表面科学垂直生长的碳纳米管和钨阴极热电子发射的比较研究

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Thermionic emission from vertically grown carbon nanotubes (CNTs) by water-assisted chemical vapor deposition (WA-CVD) is investigated. I-V characteristics of WA-CNT samples exhibit strong Schottky effect leading to field proportionality factor β~ 10~4 cm"1 in contrast to fl ~ 200 cm"1 for the bare tungsten substrate. Non'contact atomic force microscopy imaging of CNT samples show propensity of nanoasper-ities over a scale of micron size over which the tungsten surface is seen to be atomically smooth. The values of root mean-square roughness for CNTs and W were found to be 24.2 nm and 0.44 nm respectively. The Richardson-Dushman plots yield work function values of ?_(CNT=)4.5 and φW - 4.3 eV. Current versus time data shows that CNT cathodes are fifteen times noisier than tungsten cathode presumably due to increased importance of individual atomic events on the sharp CNT tips of bristle like structures. Power spectral density of current exhibited 1/$ behavior with £~ 1.5, and 2 for W and CNTs. The former suggests surface diffusion whereas the latter indicates adsorption/desorption of atomic/molecular species as a dominant mechanism of noise generation.
机译:研究了通过水辅助化学气相沉积(WA-CVD)垂直生长的碳纳米管(CNT)的热电子发射。 WA-CNT样品的I-V特性表现出很强的肖特基效应,导致场比例因子β〜10〜4 cm“ 1,而裸钨衬底的fl〜200 cm” 1。 CNT样品的非接触式原子力显微镜成像显示了纳米级的倾向,在微米级的尺度上,钨表面看起来原子上很光滑。发现CNT和W的均方根粗糙度值分别为24.2nm和0.44nm。理查森-杜什曼(Richardson-Dushman)图得出的功函数值为__(CNT =)4.5和φW-4.3 eV。电流与时间的数据表明,CNT阴极的噪音比钨阴极高15倍,这可能是由于在刚毛状结构的尖锐CNT尖端上单个原子事件的重要性提高了。电流的功率谱密度在£〜1.5时表现为1 / $行为,在W和CNT中表现为2。前者表明表面扩散,而后者表明原子/分子种类的吸附/解吸是产生噪声的主要机制。

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