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- W2039640836 abstract "The CuO-In 2 O 3 core-shell nanowire was fabricated by a two-step method. The CuO nanowire core (NWs) was firstly grown by the conventional thermal oxidation of Cu meshes at 500°C for 5 hours. Then, the CuO nanowires were immersed into the suspension of amorphous indium hydroxide deposited from the In(AC) 3 solution by ammonia. The CuO nanowires coated with In(OH) 3 were subsequently heated at 600°C to form the crystalline CuO-In 2 O 3 core-shell structure, with In 2 O 3 nanocrystals uniformly anchored on the CuO nanowires. The gas sensing properties of the formed CuO-In 2 O 3 core-shell nanowires were investigated by various reducing gases such as hydrogen, carbon monoxide, and propane at elevated temperature. The sensors using the CuO-In 2 O 3 nanowires show improved sensing performance to hydrogen and propane but a suppressed response to carbon monoxide, which could be attributed to the enhanced catalytic properties of CuO with the coated porous In 2 O 3 shell and the p-n junction formed at the core-shell interface." @default.
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- W2039640836 date "2014-01-01" @default.
- W2039640836 modified "2023-10-14" @default.
- W2039640836 title "CuO-In<sub>2</sub>O<sub>3</sub>Core-Shell Nanowire Based Chemical Gas Sensors" @default.
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- W2039640836 doi "https://doi.org/10.1155/2014/973156" @default.
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