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Y摻雜ZnO復合材料的製備及氣敏性能

Preparation and gas sensing properties of Y doped ZnO composites

  • 摘要: 通過自犧牲模板法製備Y摻雜ZnO的半導體材料(Zn-MOF-Y),並對合成材料進行表征。Zn-MOF-Y的微觀特征表現為由納米顆粒組成的納米球為ZnO和YF3的復合材料,含有Zn、O、Y、F這4種元素,其比表面積為15.7844 m2/g,平均孔徑為15 nm。對以Zn-MOF-Y為傳感材料製備的半導體氣體傳感器進行氣敏測試,其對100 mg/L 的NO2的響應值為20🫘,傳感器的響應與濃度呈現線性關系😵;對100 mg/L的NO2的響應/恢復時間為82/64 s🐊,並且該傳感器具有優良的穩定性💪🏿。由於該傳感器具有以上優點🦻🏿,這為其以後的實際應用提供了可能。

     

    Abstract: Y doped ZnO semiconductor materials (Zn-MOF-Y) were prepared by self-sacrificing template method and the synthetic materials were characterized. The microcosmic characteristics of Zn-MOF-Y were nanospheres composed of nanoparticles. The material is a composite of ZnO and YF3, and has four elements including Zn, O, Y and F. The specific surface area of the material is 15.7844 m2/g and the average pore size is 15 nm. The semiconductor gas sensor prepared with Zn-MOF-Y as the sensor material was tested for gas sensitivity, and its response value to 100 mg/L NO2 was 20, and the response of the sensor showed a linear relationship with the concentration. The response/recovery time to 100 mg/L NO2 is 82/64 s and the sensor has excellent stability. These provide the possibility for the practical application of sensors.

     

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