4.2 Article

Sensing of Ethanol with Nanosize Fe-ZnO Thin Films

期刊

JOURNAL OF NANOMATERIALS
卷 2009, 期 -, 页码 -

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HINDAWI LTD
DOI: 10.1155/2009/316035

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  1. National Science Council
  2. Bureau of Energy
  3. NSRRC, Taiwan

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Sensing of ethanol with iron doped ZnO (Fe-ZnO) thin films has been studied in this work. By X-ray diffraction spectroscopy, it is found that ZnO is the main compound in the low-iron (< 10%) doped ZnO thin films. ZnFe2O4 is also found as 20-50% of iron are doped on the thin films. The 5% Fe-ZnO thin film has a very high sensitivity (R-air/R-ethanol > 70) to 1000 ppm of ethanol at 300 K. It seems that iron can promote the sensivity of the ZnO thin film. The thin film doped with a greater amount ( 20-50%) of iron has, however, a much less sensitivity (< 15) to ethanol. The chemical interactions between oxygen of ethanol and zinc on the Fe-ZnO thin film cause changes of the bond distances of Zn-O and Fe-O in the thin films to 1.90and 1.98 angstrom which can be restored to 1.91 and 1.97 angstrom, respectively, in the absence of ethanol. Copyright (C) 2009

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