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Sol-gel synthesis of TiO2 nano powder and study of their gas sensing performance using thick film resistors

机译:TiO 2 纳米粉的溶胶-凝胶法合成及其厚膜电阻器的气敏性能研究

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摘要

Nano size TiO2 powder with anatase and rutile structure was prepaired by a sol-gel method using TiCl4 ethanol solution. The TiCl4 acts as precursor in this reaction. The obtained product with grain size 2.80 nm. The obtained product consist of both rutile and anatase phases. These phase formed after drying of gel at 80°C.The proportion of anatase to rutile was 6∶8.The high proportion of rutile phase responsible for higher gas sensitivity. The thermal stability of nano product tested using TGA-DTA technique. The nano size structure of TiO2 was confirmed by X-Ray Diffraction Spectroscopy (XRD), Field Emission Scanning Electron Microscopy (FESEM). The gas sensitivity of material tested by preparing thick film by screen printing technique for this the thixotropic paste of material was prepared by using ethyl cellulose and butyl cellulose. The gas sensing performance of this thick film was tested for gases like ethanol, CO2, H2S, NH3, CO, Cl2, gases and observed maximum sensitivity for H2S gas at 350 °C.
机译:采用TiCl 4 乙醇溶液通过溶胶-凝胶法对具有锐钛矿型金红石结构的纳米TiO 2 粉末进行了预配对。 TiCl 4 在该反应中充当前体。得到的产物的粒径为2.80nm。所得产物由金红石相和锐钛矿相组成。这些相在80°C的凝胶干燥后形成。锐钛矿与金红石的比例为6∶8。高比例的金红石相导致较高的气体敏感性。使用TGA-DTA技术测试的纳米产品的热稳定性。 TiO 2 的纳米结构通过X射线衍射光谱(XRD),场发射扫描电子显微镜(FESEM)进行了确认。通过丝网印刷技术制备厚膜来测试材料的气敏性,为此,使用乙基纤维素和丁基纤维素制备材料的触变糊。对于乙醇,CO 2 ,H 2 S,NH 3 ,CO,Cl < inf> 2 气体,并在350°C下观察到H 2 S气体的最大灵敏度。

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