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Growth and field emission properties of nanotip arrays of amorphous carbon with embedded hexagonal diamond nanoparticles

机译:嵌入六边形金刚石纳米粒子的无定形碳纳米尖端阵列的生长和场发射特性

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Nanotip arrays of amorphous carbon with embedded hexagonal diamond nanoparticles were prepared at room temperature for use as excellent field emitters by a unique combination of anodic aluminum oxide (AAO) template and filtered cathodic arc plasma (FCAP) technology. In order to avoid nanopore array formation on the AAO surface, an effective multi-step treatment employing anodization and pore-widening processes alternately was adopted. The nanotips were about 100 nm in width at the bottom and 150 nm in height with density up to 1010 cm−2. Transmission electron microscopy investigation indicates that many nanoparticles with diameters of about 10 nm were embedded in the amorphous carbon matrix, which was proved to be hexagonal diamond phase by Raman spectrum and selected-area electron diffraction. There is no previous literature report on the field emission properties of hexagonal diamond and its preparation at room temperature under high-vacuum condition. The nanotip arrays with hexagonal diamond phase exhibit a low turn-on field of 0.5 V/μm and a threshold field of 3.5 V/μm at 10 mA/cm2. It is believed that the existence of hexagonal diamond phase has improved the field emission properties.
机译:通过阳极氧化铝(AAO)模板和过滤的阴极电弧等离子体(FCAP)技术的独特组合,在室温下制备了具有嵌入的六角形金刚石纳米颗粒的无定形碳的纳米尖端阵列,以用作出色的场致发射器。为了避免在AAO表面形成纳米孔阵列,采用了交替采用阳极氧化和扩孔工艺的有效多步骤处理。纳米尖端的底部宽度约为100 nm,高度约为150 nm,密度最高为10 10 cm -2 。透射电子显微镜研究表明,许多直径约10 nm的纳米颗粒被嵌入无定形碳基质中,通过拉曼光谱和选择区域电子衍射证明其为六方菱形相。以前没有文献报道六角形金刚石的场发射特性及其在高真空条件下在室温下的制备。具有六边形金刚石相的纳米尖端阵列在10 mA / cm 2 时具有0.5 V /μm的低导通场和3.5 V /μm的阈值场。据信,六角形金刚石相的存在改善了场发射性能。

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