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Tungsten oxide nanorod growth by pulsed laser deposition: influence of substrate and process conditions

机译:氧化钨奈米棒增长脉冲激光器沉积:衬底和过程的影响条件

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Tungsten oxide nanorods (NRs) have been grown on W, Ta and Cu substrates following 193 nm pulsed laser ablation of a WO3 target in a low background pressure of oxygen. The deposited materials were analysed by scanning and (high resolution) transmission electron microscopy (HRTEM), selected area electron diffraction (SAED), X-ray diffraction, Raman and X-ray photoemission spectroscopy, and tested for field emission. In each case, HRTEM analysis shows NR growth along the [1001 direction, and clear stacking faults running along this direction (which are also revealed by streaking in the SAED pattern perpendicular to the growth axis). The NR composition in each case is thus determined as sub-stoichiometric WO_(3-δ), but the NR morphologies are very different. NRs grown on W or Ta are short (hundreds of nm in length) and have a uniform cross-section, whereas those grown on a Cu substrate are typically an order of magnitude larger, tapered, and display a branched, dendritic microstructure. Only these latter NRs give significant field emission.
机译:氧化钨纳米棒(NRs)一直在增长W, Ta和铜基板193海里脉冲激光烧蚀的WO3目标在低背景的氧气压力。材料被扫描和分析(高透射电子显微镜分辨率)(HRTEM),选定区电子衍射(SAED)、x射线衍射、拉曼光谱和x射线光电发射光谱,检测领域发射。沿[1001年增长方向,清晰堆积层错沿着这个方向(这也揭示了SAED裸奔模式与增长轴垂直)。因此成分在每种情况下决定sub-stoichiometric WO_(3 -δ),但NR形态非常不同。或助教短(几百海里长度)和有一个统一的横截面,而那些生长吗在铜衬底通常的订单级大,锥形,并显示支,树突微结构。后者的关系,给重要的场致发射。

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