Influence of pretreatment on the properties of α-Fe2O3 and the effect on photocatalytic degradation of methylene blue under visible light
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Date
2020
Journal Title
Journal ISSN
Volume Title
Publisher
IWA Publishing
Abstract
The hematite (α-Fe
2
O
3
) nanostructures were synthesized by thermal oxidation of metal at 500
C
under atmospheric pressure. We studied the effect of the electrochemical pretreatment of the
substrate before calcinations and its impact on the morphology, crystalline structure, lattice
microstructural, and optical properties of α-Fe
2
O
. Uniform nanosheets were observed on the
sample surface after calcination; their dimension and morphology were accentuated by the
pretreatment, as confirmed by the SEM images. The characteristics of the nanostructures, analyzed
by X-ray diffraction (XRD), revealed a rhombohedral symmetry with the space group R-3c and lattice
constants: a ¼ 0.5034 nm and c ¼ 1.375 nm. The average crystallite size and strain, determined from
the Williamson-Hall (W-H) plot, showed substantial variations after the substrate pretreatment. The
Raman spectroscopy confirmed the changes in the crystal properties of the hematite submitted to
pretreatment. The diffuse reflectance allowed to evaluate the optical gap which lies between 1.2 and
1.97 eV, induced by the electrochemical processing. The photocatalytic activity of α-Fe
3
films was
assessed by the degradation of methylene blue (MB) under LED light; 15% enhancement of the
degradation for the pretreated specimens was noticed
Description
Keywords
Electrochemical pretreatment, Hematite nanosheets, kinetic model, Microstructural analysis, Photocatalysis, Thermal oxidation
