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Sensitivity of nanocrystalline tungsten oxide to CO and ammonia gas determined by surface catalysts

机译:表面催化剂测定纳米氧化钨对CO和氨气的敏感性

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Nanocrystalline tungsten oxide with variable particle size and surface area was synthesized by aqueous deposition and heat treatment for use in resistive gas sensors. Surface modification with 1 wt.% Pd and Ru was performed by impregnation to improve the sensitivity to CO and ammonia. Acid and oxidation surface sites were evaluated by temperature-programmed techniques using probe molecules. The surface acidity dropped with increasing particle size, and was weakly affected by additives. Lower crystallinity of WO3 and the presence of Ru species favoured temperature-programmed reduction of the materials. Modifying WO3 increased its sensitivity, to CO at ambient condition for modification by Pd and to NH3 at elevated temperature for Ru modification. An in situ infrared study of the gas - solid interaction showed that the catalytic additives change the interaction route of tungsten oxide with the target gases and make the reception of detected molecules independent of the semiconductor oxide matrix.
机译:通过水相沉积和热处理合成了具有可变粒径和表面积的纳米晶氧化钨,用于电阻式气体传感器。通过浸渍进行具有1重量%的Pd和Ru的表面改性,以提高对CO和氨的敏感性。通过使用探针分子的温度编程技术评估酸和氧化表面的位置。表面酸度随着粒径的增加而下降,并且几乎不受添加剂的影响。 WO3的较低结晶度和Ru物种的存在有利于材料的程序升温还原。改性WO3提高了其敏感性,在环境条件下对CO进行了Pd改性,而对NH3对高温进行了Ru改性。对气-固相互作用的原位红外研究表明,催化添加剂改变了氧化钨与目标气体的相互作用路径,并使接收到的分子的接收独立于半导体氧化物基质。

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