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金属矿山 ›› 2016, Vol. 45 ›› Issue (04): 158-163.

• 安全与环保 • 上一篇    下一篇

用WO3纳米材料制备矿业安全用NO2气体传感器

陈享享,沈岩柏,王玮,张宝庆,樊虹,魏德洲   

  1. 东北大学资源与土木工程学院,辽宁 沈阳 110819
  • 出版日期:2016-04-15 发布日期:2016-08-16
  • 基金资助:

    基金项目 国家优秀青年科学基金项目(编号:51422402),中央高校基本科研业务费项目(编号:N140105002,L1501003),辽宁省高等学校优秀人才支持计划项目(编号:LJQ2013025),教育部高等学校博士学科点专项科研基金新教师类项目(编号:20130042120033),教育部留学回国人员科研启动基金项目(编号:47-3)。

NO2 Gas Sensors Made from WO3 Nanomaterials Used for Mining Safety

Chen Xiangxiang,Shen Yanbai,Wang Wei,Zhang Baoqing,Fan Hong,Wei Dezhou   

  1. School of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China
  • Online:2016-04-15 Published:2016-08-16

摘要: 以钨酸钠为钨源、草酸和硫酸钾混合物为辅助剂,采用水热合成法在不同pH值条件下制备WO3纳米材料,对反应产物的相组成和微观结构进行表征并考察其气敏性能。结果表明:产物形貌由pH=0.8时的无规则过渡到pH=1.0时的微米球,直至pH=1.6时的板状结构;在pH=1.0条件下获得具有最大比表面积的WO3微米球,且形貌均匀一致;pH为1.0时合成的WO3纳米材料对NO2具有优良的气敏性能,在工作温度100 ℃时可获得最大气体灵敏度。对pH值为1.0时制备的WO3纳米材料在工作温度100 ℃时进行不同浓度NO2的响应—恢复特性曲线分析表明,气体灵敏度随着WO3纳米材料比表面积和NO2浓度的升高而增加。从材料微观结构设计角度出发来研制新型矿业安全用气体传感器是一种有效的方法。

关键词: WO3, 混合辅助剂, pH, NO2, 气敏性能

Abstract: WO3 nanomaterials were synthesized by hydrothermal method at different pH values,where the sodium tungstate was used as tungsten source and the mixture of potassium sulfate and oxalic acid was used as the complexing agents.The phase composition and microstructure were characterized.The results showed that the optimal WO3 products had a single hexagonal crystal and were assembled by WO3 nanorods.The morphology of the products changed from irregularity at pH value of 0.8,to microspheres at pH value of 1.0,finally to plate-like structure at pH value of 1.6.WO3 microspheres showed the maximal effective surface area and uniform structure at pH value of 1.0.The synthesized WO3 nanomaterials showed excellent gas sensing properties to NO2.The highest response was obtained at an operating temperature of 100 ℃.WO3 nanorods prepared with pH value of 1.0 at an operation temperature of 100 ℃ for different concentrations of NO2 response-recovery characteristic curve analysis showed that,the response increased with the increase of the effective surface area of WO3 nanomaterials and NO2 concentration.The results demonstrate that it is an effective method to develop new-type mine gas sensors by microstructure design of the nanomaterials.

Key words: WO3, Complexing agents, pH, NO2, Gas sensing property