Ferrate(VI) as an iron source for the synthesis of a silica aerogel-supported iron oxide catalyst for sulfide oxidation

Potassium ferrate(VI), K 2 FeO 4 , was used as the iron precursor to prepare iron (hydr)oxide (FeH y O x ) supported on silica aerogel by an aqueous hydrothermal method. Electron microscopy and elemental analysis supported the incorporation and dispersion of iron-containing species within the porous silica framework, while X-ray diffraction (XRD) was consistent with a poorly crystalline or amorphous Fe-containing phase. The catalyst contained 5 wt% Fe and retained a Brunauer–Emmett–Teller (BET) specific surface area of 221.9 m² g⁻¹, although silica aerogel accessible porosity decreased substantially during preparation. Using H 2 O 2 in ethanol at room temperature, the catalyst afforded substrate conversions from (59 ± 2)% to (100 ± 2)% and sulfoxide selectivities from (88 ± 2)% to (98–100)%. Under the optimized conditions, methyl phenyl sulfide conversion and sulfoxide selectivity were (98–100)% and (91 ± 2)%, respectively. The catalyst was evaluated over six consecutive runs, with conversion decreasing from (98–100)% to (75 ± 2)% while sulfoxide selectivity remained high. Solution-phase atomic absorption spectroscopy (AAS) detected no increase in Fe above the reported background. These results establish ferrate(VI) as a useful precursor for supported iron-based oxidation catalysts and identify catalyst durability and synthesis resource consumption as priorities for further development.

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Journal
Scientific Reports
Published
2026-09-26
DOI
https://doi.org/10.1038/s41598-026-73293-1
Primary Topic
Advanced oxidation water treatment
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article
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article

Ferrate(VI) as an iron source for the synthesis of a silica aerogel-supported iron oxide catalyst for sulfide oxidation

Salimi Saeideh, Mohammad Mahdi Najafpour, Suleyman I. Allakhverdiev, Zahra Zand et al.
Scientific Reports
Advanced oxidation water treatment
article

Ferrate(VI) as an iron source for the synthesis of a silica aerogel-supported iron oxide catalyst for sulfide oxidation

Salimi Saeideh, Mohammad Mahdi Najafpour, Suleyman I. Allakhverdiev, Zahra Zand, Mojtaba Amini, Mojtaba Bagherzadeh
article en

Abstract

Potassium ferrate(VI), K 2 FeO 4 , was used as the iron precursor to prepare iron (hydr)oxide (FeH y O x ) supported on silica aerogel by an aqueous hydrothermal method. Electron microscopy and elemental analysis supported the incorporation and dispersion of iron-containing species within the porous silica framework, while X-ray diffraction (XRD) was consistent with a poorly crystalline or amorphous Fe-containing phase. The catalyst contained 5 wt% Fe and retained a Brunauer–Emmett–Teller (BET) specific surface area of 221.9 m² g⁻¹, although silica aerogel accessible porosity decreased substantially during preparation. Using H 2 O 2 in ethanol at room temperature, the catalyst afforded substrate conversions from (59 ± 2)% to (100 ± 2)% and sulfoxide selectivities from (88 ± 2)% to (98–100)%. Under the optimized conditions, methyl phenyl sulfide conversion and sulfoxide selectivity were (98–100)% and (91 ± 2)%, respectively. The catalyst was evaluated over six consecutive runs, with conversion decreasing from (98–100)% to (75 ± 2)% while sulfoxide selectivity remained high. Solution-phase atomic absorption spectroscopy (AAS) detected no increase in Fe above the reported background. These results establish ferrate(VI) as a useful precursor for supported iron-based oxidation catalysts and identify catalyst durability and synthesis resource consumption as priorities for further development.

Scientific Reports
Sharif University of Technology (IR), Institute for Advanced Studies in Basic Sciences (IR), University of Tabriz (IR), Timiryazev Institute of Plant Physiology (RU)
Decent work and economic growth
Openalex Percentile: Top 21%
Advanced oxidation water treatment
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