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Excellent Field Emission Properties of Short Conical Carbon Nanotubes Prepared by Microwave Plasma Enhanced CVD Process

机译:微波等离子体增强CVD工艺制备的短圆锥形碳纳米管的优异场发射性能

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摘要

Randomly oriented short and low density conical carbon nanotubes (CNTs) were prepared on Si substrates by tubular microwave plasma enhanced chemical vapor deposition process at relatively low temperature (350–550 °C) by judiciously controlling the microwave power and growth time in C2H2 + NH3gas composition and Fe catalyst. Both length as well as density of the CNTs increased with increasing microwave power. CNTs consisted of regular conical compartments stacked in such a way that their outer diameter remained constant. Majority of the nanotubes had a sharp conical tip (5–20 nm) while its other side was either open or had a cone/pear-shaped catalyst particle. The CNTs were highly crystalline and had many open edges on the outer surface, particularly near the joints of the two compartments. These films showed excellent field emission characteristics. The best emission was observed for a medium density film with the lowest turn-on and threshold fields of 1.0 and 2.10 V/μm, respectively. It is suggested that not only CNT tip but open edges on the body also act as active emission sites in the randomly oriented geometry of such periodic structures.
机译:通过明智地控制C2H2 + NH3气体中的微波功率和生长时间,在相对较低的温度(350–550°C)下通过管状微波等离子体增强化学气相沉积工艺在Si基片上制备了随机取向的短密度和低密度圆锥形碳纳米管(CNT)。组成和铁催化剂。 CNT的长度和密度都随着微波功率的增加而增加。 CNT由规则的锥形隔室组成,这些隔室以其外径保持恒定的方式堆叠。大多数纳米管具有尖锐的圆锥形尖端(5-20​​ nm),而另一侧则是敞开的或具有圆锥/梨形催化剂颗粒。碳纳米管是高度结晶的,并且在外表面上有许多开口边缘,特别是在两个隔室的接合处附近。这些膜显示出优异的场发射特性。对于具有最低开启和阈值场分别为1.0和2.10 V /μm的中密度膜,观察到最佳发射。建议在这种周期性结构的随机定向的几何结构中,不仅CNT尖端而且人体上的开放边缘也充当主动发射位点。

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