Department of Electronic Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.
Nanotechnology. 2010 Jan 22;21(3):035702. doi: 10.1088/0957-4484/21/3/035702.
Low operating electric field and stable emission current have been achieved in IrO(2) nanocrystal-coated carbon nanotube bundle arrays (CNTBAs). Patterned vertically aligned CNTBAs were synthesized using thermal chemical vapor deposition followed by the deposition of IrO(2) nanocrystals by reactive radio-frequency magnetron sputtering using an Ir target. The structural and spectroscopic properties were characterized by field emission scanning and transmission electron microscopy, and Raman spectroscopy. The current density versus electric field measurements yielded a low turn-on field of 0.7 V microm(-1) at a current density of 0.1 microA cm(-2), a low threshold field of 2.3 V microm(-1) at a current density of 1 mA cm(-2) and a high field enhancement factor of 1 x 10(4) for the IrO(2)-coated CNTBAs. Long-term stability was also demonstrated. The enhancement of field emission characteristics is attributed to the combined effects of the geometrical structure of the IrO(2)-coated CNTBAs, and the natural conducting and enhanced resistance to oxidation properties of IrO(2).
在 IrO(2)纳米晶包覆的碳纳米管束阵列 (CNTBAs) 中实现了低工作电场和稳定的发射电流。使用热化学气相沉积合成图案化的垂直排列 CNTBAs,然后通过使用 Ir 靶的反应射频磁控溅射在 CNTBAs 上沉积 IrO(2)纳米晶。通过场发射扫描和透射电子显微镜以及拉曼光谱对结构和光谱性质进行了表征。电流密度与电场测量得到的开启场低至 0.7 V µm(-1),在电流密度为 0.1 μA cm(-2)时;阈值场低至 2.3 V µm(-1),在电流密度为 1 mA cm(-2)时;IrO(2)包覆的 CNTBAs 的场增强因子高达 1 x 10(4)。还证明了长期稳定性。场发射特性的增强归因于 IrO(2)包覆的 CNTBAs 的几何结构以及 IrO(2)的天然导电性和增强的抗氧化性的综合影响。