贵金属掺杂纳米偏锡酸锌气敏性能及其机理分析
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重庆市自然科学基金资助项目(CSTC2005BA4015)


Gas sensing properties and mechanism of zinc stannate thick film gas sensors by doping noble metal catalysts
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    摘要:

    运用共沉淀法制备出纳米ZnSnO3粉末,X射线衍射仪(XRD)分析为纯的ZnSnO3相,透射电镜(TEM)分析表明粒度达到纳米级。利用传统的旁热厚膜制备工艺制备了纯ZnSnO3及其掺杂贵金属的气敏传感器,测试了气敏性能。通过对气体吸附机理和扫描电子显微镜(SEM)对敏感层的分析解释气敏性能提高的原因。结果表明: Ag+、Pd2+的掺杂可提高器件对C2H5OH的灵敏度,对H2敏感度的提高达到15倍以上。掺杂阻碍了基体晶粒的长大,使其表面不规则且有较多气孔,这是气敏性能提高的主要原因。

    Abstract:

    NanoZnSnO3 powders were prepared by the coprecipitation method, using ZnSO4·7H2O SnCl4·5H2O as the starting material. The ceramic powders were characterized by Xray diffraction and transmission electron microscopy. Pure and noble metaldoped ZnSnO3 thick film gas sensors were fabricated by an indirect heating process and the gas sensing properties were tested. The reason for the above improvement was analyzed on a gas sensing mechanism and the basis of morphology observation of these thick film sensors. The results show that the sensitivities of these thick sensors to combustible gases, such as C2H5OH and H2, are greatly improved. Gas sensitivities of thick sensors with doping metallic irons, including Ag+ and Pd2+ to hydrogen gas, are fifteen times greater than that of pure ZnSnO3 thick film sensors. The grain size is inhibited and more gas holes cover the surface by doping metallic irons, the key reason for the improved gassensing properties.

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刘天模,甘浩宇,曾文.贵金属掺杂纳米偏锡酸锌气敏性能及其机理分析[J].重庆大学学报,2008,31(12):1355-1359.

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