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p-type α-Fe2O3 nanowires and their n-type transition in a reductive ambient
Journal article   Open access   Peer reviewed

p-type α-Fe2O3 nanowires and their n-type transition in a reductive ambient

Yu-Chen Lee, Yu-Lun Chueh, Chin-Hua Hsieh, Mu-Tung Chang, Li-Jen Chou, Zhong Lin Wang, Yann-Wen Lan, Chii-Dong Chen, Hiroki Kurata and Seiji Isoda
Small, Vol.3(8), pp.1356-1361
08/2007

Abstract

Conductivity Iron Nanowires Oxides
The synthesis and electronic properties of p-type Α-Fe 2 O 3 nanowires and their n-type transition in a reductive ambient with ordered oxygen vacancies were analyzed. Α-Fe 2 O 3 was the most stable iron oxide compound material, widely used in photoelectrodes, gas sensing, catalysts, magnetic recording, and in medical fields. SEM and image of Α-Fe 2 O 3 nanowires synthesized on an Fe 64 Ni 36 substrate at 450°C for 10 hours in an Ar ambient of 100 seem was done. A typical TEM image of nanowire with diameter of 18nm was analyzed. The corresponding diffraction pattern confirms the phase of Α-Fe 2 O 3 with a [001] zone axis. The results show that p-type nature of iron oxide nanowire were mainly caused by strong surface adsorption owing to the oxygen vacancies and the large surface to volume ratio.
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