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首页> 外文期刊>Nanotechnologies in Russia >The Field Emission Properties of Carbon Nanotubes and SiC Whiskers Synthesized over Ni Particles Deposited in Ion Tracks in SiO_2
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The Field Emission Properties of Carbon Nanotubes and SiC Whiskers Synthesized over Ni Particles Deposited in Ion Tracks in SiO_2

机译:沉积在SiO_2离子轨道上的Ni粒子上合成的碳纳米管和SiC晶须的场发射特性

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摘要

Carbon nanotubes (CNTs) and SiC whiskers are synthesized by the pyrolysis of acetonitrile vapor over Ni nanoparticles deposited in the pores obtained by etching heavy ion tracks in dielectric SiO_2 layers on single crystal silicon substrates. The structures obtained are studied by scanning electron microscopy and Raman spectroscopy, and their field emission characteristics are measured. The formation of CNTs or SiC whiskers as a result of catalytic hydrocarbon pyrolysis is found to depend on the occupation of ion tracks by nickel clusters. It is shown that the threshold of electron emission appearance is 1 V/μm for both types of the samples and that differences in the shape of current-voltage characteristics are explained by differences in the electronic structure of CNTs and SiC whiskers.
机译:碳纳米管(CNTs)和SiC晶须是通过乙腈蒸气在Ni纳米颗粒上热解而合成的,Ni纳米颗粒沉积在孔中,而Ni纳米颗粒是通过蚀刻单晶硅衬底上的电介质SiO_2层中的重离子径迹而获得的。通过扫描电子显微镜和拉曼光谱研究获得的结构,并测量其场发射特性。发现由于催化碳氢化合物热解而形成的CNT或SiC晶须取决于镍簇对离子径迹的占据。结果表明,两种样品的电子发射出现的阈值均为1 V /μm,并且通过CNT和SiC晶须的电子结构差异解释了电流-电压特性的形状差异。

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