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Thermionic and Field Electron Emission from Nanostructured Carbon Materials for Energy Conversion and Vacuum Electronics

机译:用于能量转换和真空电子纳米结构碳材料的热离子和现场电子发射

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While initial interest in using diamond materials for electron emission was derived from the observation of a negative electron affinity of the material, the nanoscale structure of the material has proven to be critical to obtaining field emission at an applied field of less than 2V/μm. This study presents topographic and emission site images of nanocrystalline diamond films. The results suggest that morphology variations are insufficient to explain the observed emission patterns. The thermionic properties of sulphur doped nanocrystalline diamond films and carbon nanotubes were measured and analyzed in terms of Schottky barrier lowering. The results indicated a general consistency of the field emission and thermionic emission from the same films. The potential for thermionic energy conversion based on these films is presented.
机译:虽然使用用于电子发射的金刚石材料的初始兴趣来衍生出对材料的负电子亲和力的观察,但是该材料的纳米级结构已经被证明是在施加的场处获得小于2V /μm的施加场发射至关重要。本研究提出了纳米晶金刚石薄膜的地形和排放位点图像。结果表明,形态变化不足以解释观察到的发射模式。测量硫掺杂纳米晶金刚石膜和碳纳米管的热离子性质,并以肖特基屏障降低而分析。结果表明了来自同一薄膜的现场排放和热离子排放的一般一致性。提出了基于这些薄膜的热离子能量转换的可能性。

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