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Planar field emitters and high efficiency photocathodes based on ultrananocrystalline diamond

机译:基于超纳米晶金刚石的平面场发射器和高效光电阴极

摘要

A method of forming a field emitter comprises disposing a first layer on a substrate. The first layer is seeded with nanodiamond particles. The substrate with the first layer disposed thereon is maintained at a first temperature and a first pressure in a mixture of gases which includes nitrogen. The first layer is exposed to a microwave plasma to form a nitrogen doped ultrananocrystalline diamond film on the first layer, which has a percentage of nitrogen in the range of about 0.05 atom % to about 0.5 atom %. The field emitter has about 1012 to about 1014 emitting sites per cm2. A photocathode can also be formed similarly by forming a nitrogen doped ultrananocrystalline diamond film on a substrate similar to the field emitter, and then hydrogen terminating the film. The photocathode is responsive to near ultraviolet light as well as to visible light.
机译:一种形成场发射器的方法包括将第一层布置在衬底上。第一层接种纳米金刚石颗粒。其上设置有第一层的基板在包括氮气的气体混合物中保持第一温度和第一压力。将第一层暴露于微波等离子体以在第一层上形成氮掺杂的超纳米晶金刚石膜,其氮的百分比在约0.05原子%至约0.5原子%的范围内。场发射器每cm 2 具有大约10 12 到大约10 14 个发射点。还可通过在类似于场发射器的基板上形成氮掺杂的超纳米晶金刚石膜,然后用氢终止该膜,类似地形成光电阴极。光电阴极对近紫外光以及可见光有响应。

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