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The effect of multiwalled carbon nanotube doping on the CO gas sensitivity of SnO2-based nanomaterials

机译:碳纳米管多壁掺杂对SnO2基纳米材料CO气敏性的影响

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A simple in situ method is applied for the synthesis of SnO2-coated multiwalled nanotubes (MWNTs), in which MWNT bundles are uniformly coated with a monolayer of SnO2 nanoparticles (similar to 4 nm). A hybrid SnO2 material combined with 0.1% wt MWNTs is fabricated and its CO gas-sensing properties are evaluated. SnO2-coated MWNTs are homogeneously distributed in the SnO2 matrix and the specific surface area of the hybrid material is nearly two times higher compared to pure SnO2 material. The electrical resistance is found to be dramatically decreased by three orders of magnitude compared to a conventional SnO2 sensor. The CO gas sensitivity is found to be three times higher than that of a SnO2 sensor, with good stability, indicating that the addition of 0.1% wt MWNTs is effective in improving the sensitivity towards CO. A model is proposed to explain the improvement of CO gas sensitivity for our hybrid MWNT/SnO2 material.
机译:一种简单的原位方法用于合成SnO2涂层的多壁纳米管(MWNT),其中MWNT束均匀地涂覆有单层SnO2纳米颗粒(类似于4 nm)。制备了混合有0.1%wt MWNT的SnO2杂化材料,并评估了其CO气敏特性。 SnO2涂层的MWNTs均匀地分布在SnO2基质中,杂化材料的比表面积是纯SnO2材料的近两倍。与传统的SnO2传感器相比,发现电阻显着降低了三个数量级。发现CO气体的灵敏度是SnO2传感器的三倍,并且具有良好的稳定性,表明添加0.1%wt的MWNT可以有效提高对CO的灵敏度。提出了一个模型来解释CO的改进混合MWNT / SnO2材料的气体敏感性。

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