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Synthesis and Enhanced Field-Emission of Thin-Walled Open-Ended and Well-Aligned N-Doped Carbon Nanotubes

机译:薄壁开口式和取向良好的N掺杂碳纳米管的合成及增强的场发射

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摘要

Thin-walled, open-ended, and well-aligned N-doped carbon nanotubes (CNTs) on the quartz slides were synthesized by using acetonitrile as carbon sources. As-obtained products possess large thin-walled index (TWI, defined as the ratio of inner diameter and wall thickness of a CNT). The effect of temperature on the growth of CNTs using acetonitrile as the carbon source was also investigated. It is found that the diameter, the TWI of CNTs increase and the Fe encapsulation in CNTs decreases as the growth temperature rises in the range of 780–860°C. When the growth temperature is kept at 860°C, CNTs with TWI = 6.2 can be obtained. It was found that the filed-emission properties became better as CNT growth temperatures increased from 780 to 860°C. The lowest turn-on and threshold field was 0.27 and 0.49 V/μm, respectively. And the best field-enhancement factors reached 1.09 × 105, which is significantly improved about an order of magnitude compared with previous reports. In this study, about 30 × 50 mm2 free-standing film of thin-walled open-ended well-aligned N-doped carbon nanotubes was also prepared. The free-standing film can be transferred easily to other substrates, which would promote their applications in different fields.
机译:利用乙腈作为碳源,合成了石英载玻片上的薄壁,开口不规则且排列整齐的N掺杂碳纳米管(CNT)。所获得的产品具有大的薄壁指数(TWI,定义为CNT的内径与壁厚之比)。还研究了温度对以乙腈为碳源的CNTs生长的影响。研究发现,随着温度在780–860°C范围内的升高,碳纳米管的直径,TWI增大,而铁的包裹度降低。当生长温度保持在860℃时,可以得到TWI = 6.2的CNT。发现随着CNT的生长温度从780℃升高到860℃,场发射特性变得更好。最低的导通和阈值场分别为0.27和0.49 V /μm。最佳场增强因子达到1.09×10 5 ,与以前的报告相比,显着提高了一个数量级。在这项研究中,还制备了约30×50 mm 2 的薄壁开口端排列良好的N掺杂碳纳米管的自支撑膜。独立膜可以很容易地转移到其他基材上,这将促进它们在不同领域的应用。

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