Ahmed A. Ibrahim
Engineering · The Ohio State University
Publications
204
Citations
5,876
Est. group size
~2
Recurring co-author estimate
Active years
35
Publishing since 1992
Ahmed A. Ibrahim's work centers on catalysts (especially nickel-based materials) for converting methane into hydrogen and other useful gases through processes like dry reforming and partial oxidation, alongside studies of gas-sensing nanomaterials, magnetic/ferroelectric composite materials, and some structural engineering topics like 3D-printed wood-composite beams. This is applied materials and chemical engineering research aimed at energy conversion, sensing devices, and sustainable construction materials. Students would likely engage with experimental synthesis and characterization of nanomaterials and catalysts, alongside performance testing for energy and sensing applications.
Publication output has grown substantially over the last decade, rising from single digits in 2017-2020 to over 20-36 papers per year between 2021 and 2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Exploring formaldehyde gas sensing performance of NiO nanostructures: Experimental and theoretical perspectives
Ceramics International · 2026
- Strontium-Promoted Ni/SiO<sub>2</sub>–ZrO<sub>2</sub> Catalysts for Methane Dry Reforming: Unraveling the Role of Basicity, Metal–Support Interaction, and Coke Resistance
ACS Applied Energy Materials · 2025
- Mechanical behavior of additive manufactured wood-based composites for construction
Sustainable Structures · 2025
- Tailoring Ni + Sr-MgO Catalysts for Efficient Dry Reforming of Methane: A Performance Study
Catalysis Letters · 2025
- Methane partial oxidation with Ni-Mg-Al hydrotalcites: Impact of magnesium on catalyst performance
International Journal of Green Energy · 2025
- A comparative study of SiO2, Al2O3, and mixed SiO2-Al2O3-supported nickel catalysts for dry reforming of methane: effects of calcination temperature on catalytic performance
Journal of Materials Science · 2025
- Promotional Role of Pd Over Ni Catalyst Dispersed Over Sc‐ZrO₂ for Methane Partial Oxidation: Crystallinity and Reducibility Effects
Energy Science & Engineering · 2025
- Enhancement of dielectric properties of SnO2 nanoparticles by Fe substitution
Applied Physics A · 2025
- Optimizing Ceria Promotion in Ni-Based Molecular Sieve Catalysts for Enhanced Hydrogen Production via Methane Partial Oxidation
Research Square · 2025
- Heavy metals and natural radioactivity concentration in soils from selected mining areas in Bosso local government, Niger State, Nigeria
Science World Journal · 2025
- Shear performance of PrinTimber composite beams for sustainable 3D-priniting structures
Materials and Structures · 2025
- Synthesis and biomedical applications of macrocyclic complexes
Journal of Molecular Structure · 2024
- Response Surface Methodology for Ni-Zeolite Catalyst Optimization in Syngas Production
ACS Omega · 2024
- Enhanced hydrogen production through methane dry reforming: Evaluating the effects of promoter-induced variations in reducibility, basicity, and crystallinity on Ni/ZSM-5 catalyst performance
Energy Conversion and Management X · 2024
- Strain and Exchange‐Spring Mechanism of (1‐<i>x</i>) Ni<sub>0.5</sub>Cu<sub>0.25</sub>Zn<sub>0.25</sub>Fe<sub>2</sub>O<sub>4</sub> + (<i>x</i>) SrFe<sub>11</sub>Y<sub>1</sub>O<sub>19</sub> Magnetically Soft–Hard Ferrite Composed Nanoparticles
Particle & Particle Systems Characterization · 2024
- Ceramics International×13
- Journal of Nanoelectronics and Optoelectronics×12
- Science of Advanced Materials×10
- Chemosphere×8
- Environmental Research×6
- Ahmad Umar
Engineering · The Ohio State University
- Sheikh A. Akbar
Engineering · The Ohio State University
- Anusha Anusha
Engineering · Purdue University West Lafayette
- Pelagia‐Irene Gouma
Engineering · The Ohio State University
- Fan Yang
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile