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- W2995520175 abstract "Herein, methane-sensing materials, including SnO2, Pt/MWCNTs, and SnO2-Pt/MWCNTs were synthesized and used to measure the sensing responses to 100−10000 ppm methane at room temperature. However, results showed presence of Pt and MWCNTs has significant effect on increasing the response of SnO2 sensors toward methane gas. Exposed to 100 ppm methane, SnO2, Pt/MWCNTs and SnO2-Pt/MWCNTs demonstrated 1 %, 19.95 % and 28.25 % sensing response at room temperature, respectively. Using Pt/MWCNTs, enhanced sensing features of the bare SnO2 and the obtained hybrid sensor indicated more stability at continuous working cycles. At a lower detected concentration of methane, time of response and recovery of SnO2-Pt/MWCNTs nanohybrid sensor were 176 s and 763 s, respectively. A methane sensing mechanism was also suggested based on the experiments." @default.
- W2995520175 created "2019-12-26" @default.
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- W2995520175 date "2020-02-01" @default.
- W2995520175 modified "2023-10-18" @default.
- W2995520175 title "Design and evaluation of SnO2-Pt/MWCNTs hybrid system as room temperature-methane sensor" @default.
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- W2995520175 doi "https://doi.org/10.1016/j.synthmet.2019.116267" @default.
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