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- W2131736319 endingPage "485502" @default.
- W2131736319 startingPage "485502" @default.
- W2131736319 abstract "CuO nanowires with high crystalline quality are synthesized via a simple thermal oxidation method. Charge conduction on individual nanowires under a transverse electric field exhibits an intrinsic p-type semiconducting behavior. Variations in signal transducer in different chemical gas environments are measured on individual CuO nanowire field effect transistors. They demonstrate good performance to both NO(2) and ethanol gasses. In particular, the nanowire chemical sensor reveals a reverse response to ethanol vapor under temperature variation. Experimental results and first-principles calculations indicate that ethanol is oxidized in air at high temperature, resulting in the production of CO(2) and H(2)O. The strong H(2)O adsorption leads to the reversal behavior, due to the electron transfer from H(2)O molecules to the CuO surface." @default.
- W2131736319 created "2016-06-24" @default.
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- W2131736319 creator A5064162046 @default.
- W2131736319 creator A5084809122 @default.
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- W2131736319 date "2010-11-04" @default.
- W2131736319 modified "2023-10-01" @default.
- W2131736319 title "Conductometric chemical sensor based on individual CuO nanowires" @default.
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- W2131736319 doi "https://doi.org/10.1088/0957-4484/21/48/485502" @default.
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