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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Structure and optical properties of tungsten oxide nanomaterials prepared by a modified plasma arc gas condensation technique
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Structure and optical properties of tungsten oxide nanomaterials prepared by a modified plasma arc gas condensation technique

机译:改进的等离子弧气体冷凝技术制备的氧化钨纳米材料的结构和光学性能

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With the use of a modified plasma arc gas condensation technique and control of the processing parameters, namely, plasma current and chamber pressure, we synthesized tungsten oxide nanomaterials with aspect ratios ranging from 1.1 (for equiaxed particles with the length and width of 48 nm and 44 nm, respectively) to 12.7 (for rods with the length and width of 266 nm and 21 nm, respectively). The plasma current and chamber pressure, respectively, ranged from 70 to 90 A and from 200 to 600 Torr. We then characterized the tungsten oxide nanomaterials by means of X-ray diffraction, high-resolution transmission electron microscope, UV-visible spectroscope, and photoluminescence (PL) spectroscope. Experimental results show that equiaxed tungsten oxide nanoparticles were produced at a relatively low plasma current of 70 A, whereas nanorods were produced when plasma currents or chamber pressures were increased. All of the as-prepared tungsten oxide nanomaterials exhibited a WO _(2.8) phase. Compared to the nanoparticles, the nanorods exhibited unique properties, such as a redshift in the UV-visible spectrum, a blue emission in PL spectrum, and a good performance in field emission. With respect to the field emission, the turn-on voltage for WO_(2.8) nanorods was found to be as low as 1.7 V/μm.
机译:通过使用改进的等离子弧气体冷凝技术并控制工艺参数(即等离子流和腔室压力),我们合成了长宽比为1.1的氧化钨纳米材料(对于等宽轴长为48 nm的等轴颗粒)。分别为44 nm和12.7(对于长度和宽度分别为266 nm和21 nm的棒)。等离子体电流和腔室压力分别为70至90 A和200至600托。然后,我们通过X射线衍射,高分辨率透射电子显微镜,紫外可见光谱仪和光致发光(PL)光谱仪对氧化钨纳米材料进行了表征。实验结果表明,等轴氧化钨纳米粒子是在相对较低的70 A等离子体电流下产生的,而纳米棒是在等离子体电流或腔室压力增加时产生的。所有制备的氧化钨纳米材料均表现出WO_(2.8)相。与纳米颗粒相比,纳米棒表现出独特的特性,例如紫外可见光谱中的红移,PL光谱中的蓝色发射以及场发射中的良好性能。关于场发射,发现WO_(2.8)纳米棒的开启电压低至1.7 V /μm。

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