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W5O14纳米棒结构及气体感测特性研究

Investigation on Microstructures and Gas Sensing Properties of W5O14 Nanorods

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【作者】 苏程裕张奕杰林庆林中魁许金元杨宗坤

【Author】 SU Cherng-Yuh1,2,CHANG Yi-Chieh1,LIN Hsuan-Ching1,LIN Chung-Kwei3,HSU Chin-Yuan1,YANG Tsung-Kun2(1.Institute of Manufacturing Technology,National Taipei University of Technology,Taipei 10608,Taiwan,China 2.Institute of Mechatronic Engineering,National Taipei University of Technology,Taipei 10608,Taiwan,China 3.Department of Materials Science and Engineering,Feng Chia University,Taichung 40724,Taiwan,China)

【机构】 台北科技大学制造科技研究所台北科技大学机电整合研究所逢甲大学材料科学与工程系

【摘要】 以电浆电弧作为加热源来蒸发钨靶材,由气凝合成机制以及吹气装置制备W5O14纳米棒,并探讨了W5O14纳米棒的气体感测特性.实验过程中,使用氩气添加10%的氢气作为电浆气体,并在电流90A以及腔体压力53.3kPa下蒸发钨靶材.研究结果表明,在电浆气中加入10%氢气可成功地制备具有单晶结构的W5O14纳米棒,晶格间距为0.38nm,且W5O14纳米棒会沿着[010]方向成长,而W5O14纳米棒长宽比为12.7.透过参数作佳化的设计,发现W5O14纳米棒于48h,300℃下具有良好的热稳定性;气体感测研究结果表明,W5O14纳米棒在感测温度为200℃下对低浓度(1×10-6~4×10-6)的NO2气体具有良好的感测性质,随着气体浓度的增加其感测的灵敏度也会呈线性成长.

【Abstract】 Single-crystalline W5O14 nanorods were prepared by plasma arc gas condensation with assistance of blowing gas.The gas sensing property of W5O14 nanorods was further investigated.The results show that 10% hydrogen added into argon as plasma gas leads to the formation of W5O14 nanorods prepared under the current of 90 A and chamber pressure of 53.3 kPa.The growth direction of the nanorods goes along [010] and the corresponding lattice d-spacing is 0.38 nm.The aspect ratio of the nanorods can be 12.7.The excellent thermal stability of the nanorods was also evaluated under heat treatment at 300℃ for 48 h.In addition,W5O14 nanorods exhibit outstanding gas sensing property to NO2 gas concentration low as 1×10-6~4×10-6.The relationship between gas concentration and sensitivity presents linearity.

  • 【文献出处】 过程工程学报 ,The Chinese Journal of Process Engineering , 编辑部邮箱 ,2009年S2期
  • 【分类号】TB383.1
  • 【下载频次】50
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