Please use this identifier to cite or link to this item: https://dspace.ctu.edu.vn/jspui/handle/123456789/32229
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dc.contributor.authorNguyen, Cong Tu-
dc.contributor.authorNguyen, Anh Kiet-
dc.contributor.authorPhung, Nhat Minh-
dc.contributor.authorNgo, Xuan Dinh-
dc.contributor.authorLe, Anh Tuan-
dc.contributor.authorLuu, Thi Lan Anh-
dc.contributor.authorDo, Duc Tho-
dc.contributor.authorNguyen, Huu Lam-
dc.date.accessioned2020-08-24T07:09:20Z-
dc.date.available2020-08-24T07:09:20Z-
dc.date.issued2020-
dc.identifier.issn2525-2518-
dc.identifier.urihttps://dspace.ctu.edu.vn/jspui/handle/123456789/32229-
dc.description.abstractNanocomposites of graphene oxide (GO) and tungsten oxide (WO₃) nanobricks were synthesized by co-dispersing graphene oxide and tungsten oxide nanobricksin bi-distilled water with different weight ratios (0.1, 0.3 and 0.5 wt.% of graphene oxide). The ammonia gas sensing properties of nanocomposites were studied at low temperatures (50, 100 and 150°C) with the static gas-testing system. The co-appearance and the strong interaction between graphene oxideand tungsten oxide in the nanocomposite were confirmed by Raman scattering analysis. The content of GO in nanocomposite strongly affects the resistance of nanocomposite-based sensors. When the working temperature increase from 50°C to 150°C, the response of sensors switches from the p-type (at 50°C) to n-type (at 150°C) behavior. At 150°C, the nanocomposite-based sensors show the most stable ammonia gas sensing characteristics. The working resistance of the pristine WO3 sensor reduced from 1.35 MΩ to 90, 72 and 27 kΩ when compositing with 0.1, 0.3 and 0.5 wt.% GOat 150°C, respectively. The 0.5 wt.% GO/WO₃ -based sensor shows low response but low working resistance, shorterresponse and recovery times (20 s and 280 s, respectively) which is promising for low power-consumption gas sensors.vi_VN
dc.language.isoenvi_VN
dc.relation.ispartofseriesVietnam Journal of Science and Technology;Vol.58(03) .- P.282-295-
dc.subjectGOvi_VN
dc.subjectTungsten oxide nanobricksvi_VN
dc.subjectNanocompositevi_VN
dc.subjectLow-resistance gas sensorvi_VN
dc.titleAmmonia gas sensing properties at low temperature of graphene oxide/tungsten oxide nanobricks nanocompositesvi_VN
dc.typeArticlevi_VN
Appears in Collections:Vietnam journal of science and technology

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