Study on Field Emission Properties of Carbon Nanotubes Grown on Different Metal Substrates

Dongyao Wei, Li Weilong, M. Hea, Z. Ren
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引用次数: 1

Abstract

In this study, we fabricate the carbon nanotubes (CNTs) on different metal substrates via a simple and economic growing process by using a spraying device to inject the catalyst into the reaction chamber. The microstructure and field emission properties of the CNTs grown by three different metal substrates are researched. The results show that the CNTs grown on the high-voltage aluminum alloy substrate have optimal field emission properties. The turn-on electric field and threshold electric field is 0.92 V/μm and 2.58 V/μm respectively and the field enhancement factor is 20930. Lastly, the field emission current stability of the CNTs is tested, finding the field emission current of the CNTs grown on the high-voltage aluminum alloy substrate is the stablest. The high current density and good stability demonstrate that the CNTs grown on the high-voltage aluminum alloy substrate could be the promising and highly efficient field electron emitters.
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不同金属基质上生长的碳纳米管场发射特性研究
在本研究中,我们利用喷射装置将催化剂注入反应室,通过简单经济的生长工艺在不同的金属基底上制备了碳纳米管(CNTs)。研究了三种不同金属衬底生长的碳纳米管的微观结构和场发射性能。结果表明,在高压铝合金衬底上生长的CNTs具有最佳的场发射性能。导通电场和阈值电场分别为0.92 V/μm和2.58 V/μm,场增强系数为20930。最后,对CNTs的场发射电流稳定性进行了测试,发现在高压铝合金衬底上生长的CNTs的场发射电流最稳定。高电流密度和良好的稳定性表明,在高压铝合金衬底上生长的碳纳米管是一种很有前途的高效场电子发射材料。
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