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Truong Duong, Vu; Nguyen, Cong Tu; Luong, Huu Bac; Luu, Lan Anh; Nguyen, Duc Chien; Nguyen, Huu Lam, E-mail: tu.nguyencong@hust.edu.vn, E-mail: lam.nguyenhuu@hust.edu.vn2019
AbstractAbstract
[en] Multi-walled carbon nanotubes (MWCNTs) were prepared by thermal chemical vapor deposition at 750 °C, and WO3 nanobricks with an average size of 80 nm were synthesized by a hydrothermal route. MWCNTs and WO3 were mixed at different mass ratios in dimethylformamide solution to obtain composite materials. The WO3/MWCNT composite-based sensors were used for detection of NH3 gas. The gas-sensitive properties of the sensors were compared with those of pure CNT- and WO3-based sensors. The fabricated WO3/CNT composite sensors exhibited higher response, and faster response/recovery time than the other sensors at room temperature. In this work a possible mechanism conducting to the improvement of the hybrid sensors performance is proposed. (paper)
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Source
Available from http://dx.doi.org/10.1088/2043-6254/aafedb; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Advances in Natural Sciences. Nanoscience and Nanotechnology (Online); ISSN 2043-6262;
; v. 10(1); [6 p.]

Country of publication
AMIDES, CARBON, CHALCOGENIDES, CHEMICAL COATING, DEPOSITION, DISPERSIONS, ELEMENTS, HOMOGENEOUS MIXTURES, HYDRIDES, HYDROGEN COMPOUNDS, MATERIALS, MIXTURES, NANOSTRUCTURES, NANOTUBES, NITROGEN COMPOUNDS, NITROGEN HYDRIDES, NONMETALS, ORGANIC COMPOUNDS, ORGANIC NITROGEN COMPOUNDS, OXIDES, OXYGEN COMPOUNDS, REFRACTORY METAL COMPOUNDS, SURFACE COATING, TEMPERATURE RANGE, TRANSITION ELEMENT COMPOUNDS, TUNGSTEN COMPOUNDS
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