4.7 Article

Annealing temperature effect on structural and optical investigations of Fe2O3 nanostructure

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.jmrt.2019.02.004

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Ferric oxide; Temperature; Structural; Optical

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  1. University of Malaya [RU2018 NANOCAT]

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Ferric oxide (Fe2O3) was synthesized at different temperatures (Ts) between 300 and 500 degrees C by spray pyrolysis technique. Surface of annealed Fe2O3 nanostructure was characterized by field emission scanning electron microscopic (FESEM). Annealed Fe(2)O(3 )nanostructure has showed rhombohedral hexagonal structure with the preferred orientation along (104) plane in X-ray diffraction patterns (XRD). Crystallite size was increased from 43 to 63 nm with increasing of T-s between 300 and 500 degrees C. The maximum transmittance was found to be 72% for Fe2O3 nanostructure at T-s = 300 degrees C. The energy gap for direct band transitions was measured to be 2.05-2.09 eV. Refractive index of Fe2O3 nanostructure in the visible region was found in the range of 2.37-2.62. Fe2O3 nanostructure has showed n-type electrical conductivity and electrical resistivity was found in the range of 1.02 x 10(3)-6.23 x 10(3) Omega m. Formation of transparent Fe2O3 nanostructure with band gap and high refractive index suggests the suitability of Fe2O3 nanostructure in gas sensors. (C) 2019 The Authors. Published by Elsevier B.V.

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