Msenhemba Mchihi | Physical Chemistry | Research Excellence Award

Dr. Msenhemba Mchihi | Physical Chemistry | Research Excellence Award

Yaba College of Technology | Nigeria

Dr. Msenhemba Moses Mchihi is a physical chemist whose research focuses on corrosion inhibition, green chemistry, nanomaterials, electrochemistry, adsorption studies, and computational chemistry. His work centers on developing eco-friendly corrosion inhibitors derived from plant extracts, green-synthesized metal oxide nanoparticles, and nanocomposites for protecting mild steel and aluminum in acidic and alkaline environments. Through extensive electrochemical, gravimetric, spectroscopic, microscopic, gas chromatography, and density functional theory (DFT) analyses, he has contributed significantly to understanding the mechanisms, thermodynamics, and kinetics of corrosion inhibition using sustainable materials. His research also extends to adsorption studies involving heavy-metal removal from aqueous solutions using low-cost agricultural wastes such as coconut shell activated carbon and rice husk, highlighting his commitment to environmental remediation. Dr. Mchihi has authored numerous publications in reputable chemistry journals, including studies on CuO-based nanocomposites, plant-mediated zinc oxide nanoparticles, green inhibitors such as Ficus sur, Justicia schimperi, Annonamuricata, Bauhinia tomentosa, and mixtures of Codiaeum variegatum and Ficus benjamina. He has also contributed a chemistry textbook on mole concept and chemical calculations. His scholarly excellence has earned him distinctions such as the Best Staff Award of the Chemical Science Department at Yaba College of Technology and recognition from the University of Ibadan Postgraduate College. In addition to research, he has presented at multiple national and international scientific conferences and serves in administrative roles, including Examination Officer and Seminar Coordinator at Yaba College of Technology.

Profiles : Scopus | ORCID | Google Scholar

Featured Publications

1. Mchihi, M. M., Olatunde, A. M., & Odozi, N. W. (2025). Electrochemical and gravimetric studies of the corrosion inhibitory properties of green synthesized copper oxide nanoparticles mediated by Ficus sur for mild steel in HCl. Jordan Journal of Chemistry, 20(2), 81–93.

2. Mchihi, M. M., Odozi, N. W., & Odimuko, A. B. (2025). Deciphering properties of Dryopteris marginalis as green corrosion inhibitor for mild steel in HCl: Electrochemical, gas chromatography and DFT studies. Sustainable Chemistry One World, 7, 100103.

3. Mchihi, M. M., Olatunde, A. M., & Odozi, N. W. (2025). CuO-based nanocomposite: Synthesis, characterization, and evaluation of the corrosion inhibition effectiveness for mild steel in HCl. Journal of Electrochemical Science and Engineering, 15(4), 2715.

4. Mchihi, M. M., Odozi, N. W., Nurudeen, A. O., Emesiani, M. C., & Seriki, B. O. (2024). Assessment of Helianthus tuberosus leaves extract as eco-friendly corrosion inhibitor for aluminum in sodium hydroxide: Insights from electrochemical, gravimetry, and computational consideration. Moroccan Journal of Chemistry, 12(4), 1462–1483.

5. Odozi, N. W., Emesiani, M. C., Charles, C. D., Seriki, B. O., & Mchihi, M. M. (2024). Electrochemical studies of the corrosion inhibitory potential of Annona muricata leaves extract on aluminum in hydrochloric acid medium. FUDMA Journal of Sciences, 8(3), 395–401.

Bassam Najri | Analytical Chemistry | Best Researcher Award

Mr. Bassam Najri | Analytical Chemistry | Best Researcher Award

Eskisehir Osmangazi University, Turkey

Profiles

Early Academic Pursuits

Bassam A. Najri began his academic journey with exceptional distinction, completing both his Bachelor’s and Master’s degrees in Chemistry with top honors. Demonstrating a strong aptitude for analytical and organic chemistry from the outset, he consistently ranked among the top of his class. His early academic interests were rooted in the exploration of structure–activity relationships and the synthesis of biologically active compounds, which naturally progressed into his current doctoral work in Organic Chemistry at Eskisehir Osmangazi University. This strong foundation set the stage for his interdisciplinary approach to chemical research.

Professional Endeavors

As a PhD candidate, Mr. Najri has cultivated a diverse research portfolio spanning organic synthesis, nanomaterials, electrocatalysis, and medicinal chemistry. His work is driven by the synthesis and characterization of functional materials with applications in clean energy and biomedicine. He has actively participated in five major research projects, leading investigations into novel catalysts for hydrogen production and drug development frameworks. His expertise is supported by hands-on proficiency in high-performance analytical techniques including HPLC, UV-Vis spectroscopy, IR spectroscopy, electrochemical impedance spectroscopy, and various in silico computational platforms for drug modeling.

Contributions and Research Focus

Najri’s contributions are marked by innovation at the interface of chemistry and engineering. He has co-developed benzofuran derivatives and metal-organic frameworks with promising catalytic and therapeutic applications. His research approach blends experimental design with computational analysis, yielding high-impact results in hydrogen evolution reactions, drug–target interactions, and electrochemical sensor development. His goal is to engineer materials that offer real-world solutions to energy storage challenges and emerging health issues. This multifaceted focus enables him to remain at the forefront of applied organic chemistry and nanotechnology.

Impact and Influence

Mr. Najri has co-authored over 14 publications in prestigious, peer-reviewed, indexed journals including ACS Omega, Fuel, Renewable Energy, Ionics, and Process Safety and Environmental Protection. His citation record reflects a growing academic impact, with over 100 citations, an h-index of 4, and an i10-index of 3. His interdisciplinary work has attracted attention from collaborators across Turkey, Palestine, Algeria, and Tunisia, where he contributes to international teams tackling problems in clean energy, cancer therapy, and environmental sustainability.

Academic Citations and Recognition

His academic footprint continues to expand through consistent scholarly publishing and conference participation. Despite not holding editorial or consultancy roles, his involvement in multi-country research collaborations and conference forums underlines his academic credibility and growing recognition within the scientific community. He remains actively involved with the NanotechSEM research team and participates in national chemistry and microscopy congresses in Turkey.

Technical Skills

Najri possesses a wide array of technical competencies central to modern chemical research. He is proficient in instrumental analysis techniques including HPLC, UV-Vis, FT-IR, and electrochemical techniques such as cyclic voltammetry and impedance spectroscopy. On the computational side, he has applied molecular docking, DFT calculations, and QSAR modeling tools for drug design and catalyst optimization. These combined skills empower him to bridge experimental and theoretical chemistry efficiently.

Teaching and Mentorship Experience

While formal teaching positions are not listed, Najri’s active involvement in academic research projects suggests strong collaborative and mentorship capabilities. His ability to integrate complex methods and explain cross-disciplinary phenomena indicates a readiness to mentor junior researchers and contribute to academic training programs, particularly in laboratory environments and applied research teams.

Legacy and Future Contributions

Bassam A. Najri is building a research legacy focused on sustainability, clean energy, and precision medicine. His commitment to developing high-performance electrocatalysts and therapeutic agents aligns with global efforts to transition toward environmentally friendly technologies. Moving forward, he aims to expand his collaborations and lead cutting-edge research in hydrogen energy systems and nanomedicine. With his solid scientific foundation and collaborative spirit, he is well-positioned to become a transformative figure in the chemical sciences.

Notable Publications

Modified carbon paste electrode for potentiometric determination of silver (I) ions in burning cream and radiological films
Authors: H.M. Abu-Shawish, S.M. Saadeh, H.M. Dalloul, B.A. Najri, H. Al Athamna
Journal: Sensors and Actuators B: Chemical, 182, 374–381
Year: 2013

Utilization of surface plasmon resonance band of silver nanoparticles for determination of critical micelle concentration of cationic surfactants
Authors: J.K. Salem, I.M. El-Nahhal, B.A. Najri, T.M. Hammad
Journal: Chemical Physics Letters, 664, 154–158
Year: 2016

Effect of anionic surfactants on the surface plasmon resonance band of silver nanoparticles: Determination of critical micelle concentration
Authors: J.K. Salem, I.M. El-Nahhal, B.A. Najri, T.M. Hammad, F. Kodeh
Journal: Journal of Molecular Liquids, 223, 771–774
Year: 2016

Design of highly effective organic catalyst for hydrazine electrooxidation: Iodobenzo[b]furan derivatives
Authors: B.A. Najri, S. Kaya, E. Kavak, A. Kivrak, H. Kivrak
Journal: Process Safety and Environmental Protection, 187, 792–798
Year: 2024