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    •   صفحهٔ اصلی
    • نشریات انگلیسی
    • Journal of Nanostructures
    • Volume 10, Issue 1
    • مشاهده مورد
    •   صفحهٔ اصلی
    • نشریات انگلیسی
    • Journal of Nanostructures
    • Volume 10, Issue 1
    • مشاهده مورد
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    W-doped nanoporous TiO2 for high performances sensing material toward acetone gas

    (ندگان)پدیدآور
    Wang, LihongXing, XinxinChen, NanZHao, RongjunWang, ZidongZou, TongZhezhe, WangWang, Yude
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    نوع مدرک
    Text
    Research Paper
    زبان مدرک
    English
    نمایش کامل رکورد
    چکیده
    W-doped TiO2 with nanoporous structure was synthesized by a one-step low temperature hydrothermal method using TiOSO4 and (NH4)6H2W12O40•xH2O as titanium and tungsten sources. Structure, morphology, specific surface area and chemical state of samples were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and X-ray photoelectron spectroscopy (XPS). W-doped nanoporous TiO2 samples were used as sensing materials of indirect-heating sensors and their gas-sensing performances were studied to detect acetone. The experimental results show that 7.5% W-doped nanoporous TiO2 can adsorb more oxygen molecules on the surface and provide large amount of active reaction sites on interface to profit reaction between material and gas molecules. The gas sensor based on 7.5% W-doped nanoporous TiO2 exhibits good gas-sensing performances, including high gas response value, shortened response/recovery time and good reproducibility, which make it a promising candidate in acetone detection. Apart from these, the mechanism related to the advanced properties was also investigated and presented.
    کلید واژگان
    W-doped TiO2
    Low-temperature solvothermal method
    Nanoporous structure
    Gas sensing performance
    Acetone

    شماره نشریه
    1
    تاریخ نشر
    2020-01-01
    1398-10-11
    ناشر
    University of Kashan
    سازمان پدید آورنده
    School of Materials Science and Engineering, Yunnan University, 650091 Kunming, People's Republic of China | Department of Physics, Yunnan University, 650091 Kunming, People's Republic of China
    Department of Physics, Yunnan University, 650091 Kunming, People's Republic of China
    Department of Physics, Yunnan University, 650091 Kunming, People's Republic of China
    School of Materials Science and Engineering, Yunnan University, 650091 Kunming, People's Republic of China
    School of Materials Science and Engineering, Yunnan University, 650091 Kunming, People's Republic of China
    School of Materials Science and Engineering, Yunnan University, 650091 Kunming, People's Republic of China
    Department of Physics, Yunnan University, 650091 Kunming, People's Republic of China
    School of Materials Science and Engineering, Yunnan University, 650091 Kunming, People's Republic of China | Key Lab of Micro-Nano Materials and Technology of Yunnan Province, Yunnan University, 650091 Kunming, People's Republic of China

    شاپا
    2251-7871
    2251-788X
    URI
    https://dx.doi.org/10.22052/JNS.2020.01.016
    https://jns.kashanu.ac.ir/article_104455.html
    https://iranjournals.nlai.ir/handle/123456789/233393

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