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Gas phase synthesis and field emission properties of 3D aligned double walled carbon nanotube/anatase hybrid architectures

机译:气相合成和场致发射特性3 d对齐的双层壁碳纳米管/锐钛矿混合架构

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摘要

A 3D hybrid architecture composed of macroscopic, vertically aligned CNT blocks which are formed via a metal catalyzed CVD process followed by deposition of TiO2 on the CNT side walls in nanocrystalline or amorphous form is presented. The morphology of the deposited TiO2 can be tailored by the deposition method employed. Depositing TiO2 from the gas phase by employing the organometallic precursor Ti[OCH(CH3)2]4 leads to formation of nanocrystalline anatase or rutile particles with a dense coverage on the surface and within the 3D CNT scaffold. Phase pure TiO2 (anatase) is formed between 500 and 700 °C, while higher temperatures resulted in rutile modification of TiO2. Below 500 °C, TiO2 forms an amorphous oxide layer. At higher temperatures such initially formed TiO2 layers segregate into particles which tend to crystallize. In contrast, when generating TiO2 by oxidation of Ti metal which is deposited by vaporization onto the 3D CNT block array, and subsequently oxidized in air or controlled O2 atmosphere this leads to a porous layer with a particular nanostructure on top of the CNT blocks. First studies of the fabrication and field emission of the new 3D CNT/TiO2 hybrid cathodes display good and stable FE characteristics with onset fields for current density of 1 μA cm~(-2) of 1.7 to 1.9 V um~(-1), while the average field enhancement factor is in the range between 2000 and 2500 depending on the O2 base pressure during the measurements.
机译:一个3 d混合组成的宏观架构,垂直对齐问块形成通过一个金属催化化学汽相淀积过程紧随其后沉积二氧化钛问一边的墙壁奈米晶或非晶形式。沉积二氧化钛的形态量身定做的沉积方法。气相沉积二氧化钛的运用有机金属前体Ti (OCH (CH3) 2] 4领先形成纳米晶体的锐钛矿和金红石粒子表面有密集的报道在3 d问脚手架。(锐钛矿)在500年和700°C之间,形成温度升高导致金红石二氧化钛的改性。非晶氧化层。这种最初形成的二氧化钛层隔离结晶粒子。当生成二氧化钛的氧化钛金属由蒸发沉积到3 d问块数组,然后在空气中氧化这将导致一个或控制氧气气氛多孔层与特定纳米结构问的街区。制造和场致发射新的3 d问/二氧化钛混合阴极显示良好和稳定FE特征和发病区域电流密度为1μ一厘米~ (2)1.7 - 1.9 V ~ (1),而平均场增强因子在2000年至2500年之间根据范围O2在测量基准压力。

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