Heba Hamdy Farrag
Assistant Lecturer
Department of Chemistry, Faculty of Science, Cairo University, P.O. 12613 – Giza, Egypt
(email)
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2023
Farrag, H. H., I. M. Al-Akraa, N. K. Allam, and A. M. Mohammad,
"
Amendment of palladium nanocubes with iron oxide nanowires for boosted formic acid electro− oxidation
",
Arabian Journal of Chemistry
, vol. 16, issue 3, pp. 104524, 2023.
1-s2.0-s1878535222008401-main.pdf
2021
Abbas, A. A., H. H. Farrag, E. El-Sawy, and N. K. Allam,
"
Microbial fuel cells with enhanced bacterial catalytic activity and stability using 3D nanoporous stainless steel anode
",
Journal of Cleaner Production
, vol. 285, pp. 124816, 2021.
1-s2.0-s0959652620348605-main.pdf
2020
Farrag, H. H., S. Y. Sayed, N. K. Allam, and A. M. Mohammad,
"
Emerging nanoporous anodized stainless steel for hydrogen production from solar water splitting
",
Journal of Cleaner Production
, vol. 274, pp. 122826, 2020.
1-s2.0-s0959652620328717-main.pdf
2018
Farrag, H. H., A. A. Abbas, S. Y. Sayed, H. H. Alalawy, B. E. El-Anadouli, A. M. Mohammad, and N. K. Allam,
"
From Rusting to Solar Power Plants: A Successful Nano-Pattering of Stainless Steel 316L for Visible Light-Induced Photoelectrocatalytic Water Splitting
",
ACS Sustainable Chem. Eng.
, vol. 6, issue 12, pp. 17352−17358, 2018.
Al-Qodami, B. A., H. H. Farrag, S. Y. Sayed, N. K. Allam, B. E. El-Anadouli, and A. M. Mohammad,
"
Bifunctional Tailoring of Platinum Surfaces with Earth Abundant Iron Oxide Nanowires for Boosted Formic Acid Electro-Oxidation
",
Journal of Nanotechnology
, vol. 2018, 2018.
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Amendment of palladium nanocubes with iron oxide nanowires for boosted formic acid electro− oxidation
Microbial fuel cells with enhanced bacterial catalytic activity and stability using 3D nanoporous stainless steel anode
Emerging nanoporous anodized stainless steel for hydrogen production from solar water splitting
Bifunctional Tailoring of Platinum Surfaces with Earth Abundant Iron Oxide Nanowires for Boosted Formic Acid Electro-Oxidation
From Rusting to Solar Power Plants: A Successful Nano-Pattering of Stainless Steel 316L for Visible Light-Induced Photoelectrocatalytic Water Splitting
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