研究目的
Investigating the synthesis and field emission properties of vertically aligned nitrogen-doped multi-walled carbon nanotubes (N-MWNTs) produced by chemical vapor deposition (CVD) using imidazole mixed with ferrocene, and the effects of ammonia (NH3) and hydrogen (H2) flow rates on the growth and properties of N-MWNTs.
研究成果
Vertically aligned N-MWNTs were successfully synthesized by CVD at 900 °C using imidazole mixed with ferrocene. The diameter, length and nitrogen concentration of N-MWNTs can be controlled by the flow rate of NH3 and H2 gases during synthesis. The optimized condition for the highest nitrogen-doping level (4.06 at.%) was obtained by using H2 with a flow rate of 10 sccm. For field emitter based on N-MWNTs, the turn-on field and β value depend on the nitrogen doping level. These results demonstrate that nitrogen doping of CNTs reveals a promising procedure for high current density applications.
研究不足
The study focuses on the synthesis and field emission properties of N-MWNTs under specific conditions (900 °C, imidazole-ferrocene mixtures, NH3 and H2 flow rates). The effects of other parameters or alternative synthesis methods were not explored.