Reda A. Haggam
- Last known institution:
- Islamic University of Madinah
- ORCID:
- 0000-0001-8568-9668
3
h-index
1
i10-index
46
Citations
21
Works
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Publications (bars) and citations (line) by year
- Publications
- Citations
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Publication history
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Most-cited works
- Synthesis of a novel Z-scheme CeVO4/Bi2Sn2O7 heterojunction with dual photocatalytic functionality for CO2 conversion and pharmaceutical pollutant degradation202614 citations
- Photocatalytic H2O2 production and doxycycline degradation via a Z-scheme MoSi2N4-Bi2O2CO3 nanocomposites under visible light: Characterization mechanism, and toxicity evaluations20269 citations
- Fabrication of SiW9Co3–Bi4O5Br2 photocatalysts with improved charge separation for visible-light-driven hydrogen evolution and metronidazole degradation: Characterization, mechanism, and toxicity assessment20268 citations
- Synthesis of a novel Ti3C2 MXene–based nanocomposite for photocatalytic wastewater treatment and CO2 conversion: DFT analysis, mechanistic insights, and process optimization20252 citations
- Design of a hierarchical MXene-reduced graphene oxide-modified electrode decorated with layered double hydroxide for treatment of perfluorooctanoic acid (PFOA) in aqueous solution20262 citations
- Interlayer-engineered MXene@flower-like LDH for PFOA electroadsorption from water: Mechanistic analysis and multivariable optimization20262 citations
- Dual-functional Z-scheme MgIn2S4/WO3 heterojunction for visible-light CO2 reduction and antibiotic degradation: Unraveling charge transfer and reaction mechanisms20262 citations
- Photocatalytic hydrogen production and degradation of PFAS by Cs2TiBr6–Bi2WO6 supported on apricot karnel-derived biochar composites: Advanced characterization and mechanism20251 citations
- MOF-oxide Z-scheme ZnWO4@NH2-UiO-66 for coupled visible-light CO2 Photoreduction and pharmaceutical pollutant degradation: RSM–CCD optimization, DFT calculations and mechanistic insights20261 citations
- Dual-functional Z-scheme Bi4O5I2-CaIn2S4 supported on peach-core-derived biochar for visible-light-driven CO2 reduction and photocatalytic degradation of PFAS pollutants20261 citations