首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Growth and field emission properties of one-dimensional carbon composite structure consisting of vertically aligned carbon nanotubes and nanocones
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Growth and field emission properties of one-dimensional carbon composite structure consisting of vertically aligned carbon nanotubes and nanocones

机译:由垂直排列的碳纳米管和纳米锥组成的一维碳复合结构的生长和场发射特性

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摘要

A simple approach is demonstrated for quickly growing a large-area aligned carbon composite nanostructure consisting of vertically aligned nanotubes and nanocones by the catalyst-assisted pulsed laser deposition techniques. The pyrolytic graphite was used as carbon source. The carbon nanocones were first grown on the molybdenum substrate with Ni catalysts. The carbon nanotubes have a uniform shape and length, aligned vertically on carbon nanocones, and the average diameter is about 7 nm. The special carbon composite arrays exhibit excellent field emission behaviours. The long-term field emission current stability of the one-dimensioned carbon nanostructure has also been investigated. No obvious current density decay was observed after a 10-day continuous experiment, indicating the super stability of the sample as cathode material.
机译:演示了一种简单的方法,可通过催化剂辅助脉冲激光沉积技术快速生长由垂直排列的纳米管和纳米锥组成的大面积排列的碳复合纳米结构。热解石墨用作碳源。首先用Ni催化剂在钼衬底上生长碳纳米锥。碳纳米管具有均匀的形状和长度,在碳纳米锥上垂直排列,平均直径约为7 nm。特殊的碳复合材料阵列具有出色的场发射性能。一维碳纳米结构的长期场发射电流稳定性也得到了研究。经过10天的连续实验后,没有观察到明显的电流密度衰减,表明样品作为阴极材料具有超强的稳定性。

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