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首页> 外文期刊>Journal of nanoscience and nanotechnology >The Effect of Processing Parameters on the Synthesis of Tungsten Oxide Nanomaterials by a Modified Plasma Arc Gas Condensation Technique
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The Effect of Processing Parameters on the Synthesis of Tungsten Oxide Nanomaterials by a Modified Plasma Arc Gas Condensation Technique

机译:工艺参数对等离子弧气体冷凝技术合成氧化钨纳米材料的影响

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In the present study, tungsten oxide nanomaterials were synthesized by a modified plasma arc gas condensation technique. The effects of processing parameters (plasma current ranged from 70~90 A and chamber pressure ranged from 200~600 torr) on the preparation of tungsten oxide nanomaterials were investigated. X-ray diffraction results showed that all of the nanomaterials synthesized in the present study exhibited W_5O_(14) phase. Field emission scanning electron microscopy and transmission electron microscopy examinations revealed that the tungsten oxide nanomaterials were equiaxed when prepared at a relatively low plasma current of 70 A, and turned into rod-like nanoparticles with increasing plasma current (80 or 90 A). Generally, the relative amount, diameter, and length of tungsten oxide nanorods increased with increasing plasma currents or chamber pressures. The aspect ratio of the as-prepared tungsten oxide nanorods reached a maximum of 12.7 when a plasma current of 90 A and a chamber pressure of 400 torr were used. A growth mechanism for tungsten oxide nanorods was proposed.
机译:在本研究中,通过改进的等离子弧气体冷凝技术合成了氧化钨纳米材料。研究了工艺参数(等离子电流范围为70〜90 A,腔室压力范围为200〜600 torr)对氧化钨纳米材料制备的影响。 X射线衍射结果表明,本研究合成的所有纳米材料均显示W_5O_(14)相。场发射扫描电子显微镜和透射电子显微镜检查显示,当以相对较低的等离子电流70 A制备时,氧化钨纳米材料是等轴的,并随着等离子电流(80或90 A)的增加变成棒状纳米颗粒。通常,氧化钨纳米棒的相对数量,直径和长度随着等离子体电流或腔室压力的增加而增加。当使用90 A的等离子体电流和400 torr的腔室压力时,所制备的氧化钨纳米棒的长宽比达到最大值12.7。提出了氧化钨纳米棒的生长机理。

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