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- W1983942920 abstract "CuO-SnO 2 composite nanofibers with various nanograin sizes were synthesized for investigating their sensing properties with respect to H 2 S gas. The nanograin size in the CuO-SnO 2 composite nanofibers was controlled by changing the thermal treatment duration under isothermal conditions. The nanograin size was found to be critical for the sensing ability of the composite nanofibers. The CuO-SnO 2 composite nanofibers comprised of small-sized nanograins were more sensitive to H 2 S than those with larger-sized nanograins. The superior sensing properties of the CuO-SnO 2 composite nanofibers with the smaller nanograins were attributed to the formation of the larger number of p -CuO- n -SnO 2 junctions and their transformation to metallic -CuS- n -SnO 2 contacts upon exposure to H 2 S gas. The results suggest that smaller nanograins are conducive to obtaining superior H 2 S-sensing properties in CuO-SnO 2 composite nanofibers." @default.
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- W1983942920 date "2015-01-01" @default.
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- W1983942920 title "Significance of the Nanograin Size on the H<sub>2</sub>S-Sensing Ability of CuO-SnO<sub>2</sub>Composite Nanofibers" @default.
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- W1983942920 doi "https://doi.org/10.1155/2015/387641" @default.
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