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Growth of multi-walled CNTs emitters on an oxygen-free copper substrate by chemical-vapor deposition

机译:通过化学气相沉积法在无氧铜基板上生长多壁CNTs发射器

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Field emission properties of carbon nanotubes directly grown on a well-polished oxygen-free copper substrate by chemical-vapor deposition (CVD) were studied. Ni was sputtered on the copper substrate as catalyst, and the reactant gas was acetylene. From scanning electron microscopic and transmission electron microscopic images, the as-grown carbon nanotubes are seen to be bamboo structure with branches. Efficient field emission of CNTs is measured by a diode configuration, and the maximum current is 4.8 mA corresponding to a low electric field of 6.7 V/μm (the emission area is about 3.14 mm~2). The diffusion between nickel and copper substrate is found to cause the loss of catalyst based on X-ray diffraction pattern of the surface of the substrate.
机译:研究了通过化学气相沉积(CVD)在抛光良好的无氧铜基板上直接生长的碳纳米管的场发射特性。将Ni溅射在铜基板上作为催化剂,反应气体为乙炔。从扫描电子显微镜图像和透射电子显微镜图像可以看出,生长的碳纳米管是带有分支的竹结构。 CNT的有效场发射是通过二极管配置测量的,最大电流为4.8 mA,对应于6.7 V /μm的低电场(发射面积约为3.14 mm〜2)。基于基材表面的X射线衍射图,发现镍和铜基材之间的扩散引起催化剂的损失。

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