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Honeycomb arrays of carbon nanotubes in alumina templates for field emission based devices and electron sources

机译:氧化铝模板中碳纳米管的蜂窝阵列,用于基于场发射的设备和电子源

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摘要

Field Emission (FE) properties of vertically aligned Carbon Nanotubes (CNTs) grown in a nanoporous anodic aluminium oxide (AAO) template have been investigated. A 50-mu m-thick AAO template was fabricated by electrochemical techniques. The nanotubes were synthesized in a CVD quartz hot wall furnace using C2H2/N-2 mixtures as feeding gas. I-V measurements have been performed on samples after the nanotubes growth (type I samples) and after a partial Al2O3 removal (type II samples) in order to obtain segments of nanotubes protruding from the nanopores. The effects of the conditioning process and adsorbates release have been investigated. The emission curves have been analysed in the framework of the Fowler-Nordheim model. For the beta factor enhancement, a different dependence on time has been evidenced for two types of investigated samples and has been tentatively correlated with materials modifications occurring under the HV polarisation (in case of type I samples) and with the damage induced by chemical etching (in case of type II samples). The values of emitted current density (up to 40 mA/cm(2)) and the emission properties indicate that the proposed preparation methodology is suitable for the realization of robust and efficient CNT-based field emission devices and electron sources.
机译:研究了在纳米多孔阳极氧化铝(AAO)模板中生长的垂直排列的碳纳米管(CNT)的场发射(FE)特性。通过电化学技术制备了50μm厚的AAO模板。纳米管是在CVD石英热壁炉中使用C2H2 / N-2混合物作为进料气合成的。为了获得从纳米孔突出的纳米管段,已经在纳米管生长之后的样品(I型样品)和部分去除Al2O3之后(II型样品)进行了I-V测量。已经研究了调节过程和吸附物释放的影响。在Fowler-Nordheim模型的框架内分析了排放曲线。对于β因子的增强,已证明两种类型的研究样品对时间的依赖性不同,并已与HV极化下发生的材料改性(在I型样品的情况下)以及化学蚀刻引起的损伤初步相关(如果是II型样品)。发射电流密度(高达40 mA / cm(2))的值和发射特性表明,所提出的制备方法适合于实现坚固,高效的基于CNT的场发射器件和电子源。

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