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Controllable synthesis of N-doped aligned carbon nanotubes from melamine-based carbon by water-assisted chemical vapor deposition

机译:水辅助化学气相沉积可控合成来自三聚氰胺基碳的N掺杂对准碳纳米管

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摘要

N-doped well-aligned thin multiwall carbon nanotubes (CNTs) have been prepared by a facile water-assisted chemical vapor deposition (CVD) process using melamine as both the carbon precursor and N-dopant and ferrocene as both the catalyst and carbon precursor. It is shown that the synthetic temperature has strong effects on the growth of carbonaceous structure. Carbon films started to grow at reaction temperature of 700 degrees C, and the optimal temperature for the synthesis of aligned CNTs, based on the experiment results, was found to be 900 degrees C. The lengths of the CNTs can be tuned by changing the annealing time of the pyrolysis process, it could reach as long as 40.2 mu m. The atomic percentage of nitrogen doping in aligned CNTs could be achieved to 1.71%. It was found that there were many joints and defects in the as-prepared CNTs which may offer more nucleation sites on the chemically inert CNT surface for various specialized applications such as supercapacitor.
机译:通过使用三聚氰胺作为碳前体和N-掺杂剂和二茂酮作为催化剂和碳前体的碳前体和N-掺杂剂和二茂酮制备了N掺杂的良好的薄多壁碳纳米管(CNT)。 结果表明,合成温度对碳质结构的生长具有很强的影响。 碳膜在700℃的反应温度下开始生长,并且基于实验结果,对准CNT的合成的最佳温度为900℃。可以通过改变退火来调谐CNT的长度 热解过程的时间,它可以达到40.2μm。 对准CNT中氮掺杂的原子百分比可实现为1.71%。 结果发现,在制备的CNT中有许多关节和缺陷,其可为化学惰性CNT表面提供更多的成核位点,用于各种专用应用,例如超级电容器。

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