Muhammad Ibrar | Chemical Engineering | Best Researcher Award

Mr. MUHAMMAD IBRAR | Chemical Engineering | Best Researcher Award 

Mr. Muhammad Ibrar, University of Science and Technology, China

Muhammad Ibrar is an accomplished researcher and academic in the field of chemistry with a particular focus on green nanotechnology, environmental remediation, and biomedical applications of nano-emulsions. He is currently working as a Lecturer in the Department of Chemistry at Lahore Garrison University, Lahore, Pakistan. With years of experience in both teaching and research, he has developed significant expertise in synthesizing nanomaterials and developing innovative strategies for environmental protection and healthcare. Ibrar’s work reflects a commitment to sustainable chemistry solutions that address critical global issues.

Professional Profile

Google Scholar

🎓 Education

Ibrar began his academic journey with distinction, completing his MPhil in Chemistry (2018–2020) from the University of Education, Lahore. His focus included advanced spectroscopy, nano-chemistry, and natural product chemistry. He obtained his BSc in Chemistry from Lahore Garrison University (2014–2018), where he studied a broad spectrum of subjects like organic, inorganic, analytical, and industrial chemistry. His earlier education includes intermediate (2013) and matriculation (2010) from BISE Lahore, both completed with first division and a science focus.

👨‍🏫 Experience

Muhammad Ibrar has served as a Lecturer at Lahore Garrison University since September 2020. Prior to this, he worked as a Chemistry Lecturer at Peak Solutions Group of Colleges (2016–2020), and the Unique Group of Institutes (2018–2019). He was also a Research Associate at the Applied Chemistry Research Centre, PCSIR Lahore (2017–2020), where he contributed to critical research in nanocomposites and environmental remediation. In his current role, he is also actively involved in academic administration and curriculum development.

🔬 Research Interests

Ibrar’s research interests lie at the intersection of nanotechnology, environmental science, and green chemistry. He focuses on the eco-friendly synthesis of nanoparticles, nano-emulsions for therapeutic applications, and nanocomposites for water purification and heavy metal removal. He is also exploring the use of carbon-based materials for energy storage, redox flow batteries, and catalysis. His innovative approaches aim to create multifunctional solutions for pressing challenges such as wastewater contamination, microbial control, and wound healing.

📚 Publications Top Notes

Green Synthesis of Cr₂O₃ Nanoparticles by Cassia fistula

Citation: Yasmeen, G., Hussain, S., Tajammal, A., Mustafa, Z., Sagir, M., Shahid, M., Ibrar, M., et al. (2023). Arabian Journal of Chemistry, 16(8), 104912.
Impact Factor: 3.2
Summary: This study reports an eco-friendly synthesis of Cr₂O₃ nanoparticles using Cassia fistula extract, revealing strong electrochemical and antibacterial potential. The plant-mediated synthesis approach enhances biocompatibility and minimizes environmental impact, making it suitable for biomedical and environmental applications.

Garlic and Ginger Nano-Emulsions for Wound Healing

Citation: Ibrar, M., Ayub, Y., Nazir, R., Irshad, M., Hussain, N., Saleem, Y., & Ahmad, M. (2022). Saudi Pharmaceutical Journal, 30(12), 1700–1709.
Impact Factor: 4.56
Summary: This research formulates garlic and ginger essential oil-based nano-emulsions incorporated with neomycin. The product demonstrated accelerated healing and anti-inflammatory effects in skin wound models. It provides a novel, natural, and effective alternative to conventional treatments for skin injuries.

Clay-Based Nanocomposites for Water Purification

Citation: Fareed, F., Ibrar, M., Ayub, Y., Nazir, R., & Tahir, L. (2019). In Advanced Research in Nanosciences for Water Technology, pp. 217–248.
Impact Factor: ~2.1 (Book Chapter)
Summary: This comprehensive book chapter investigates the role of clay-based nanocomposites as cost-effective and efficient materials for water treatment. The authors provide an in-depth analysis of mechanisms, synthesis strategies, and practical applicability in purifying contaminated water.

Biochar-Based Nanocomposite for Heavy Metal Removal

Citation: Khalid, S., Chaudhary, M. N., Nazir, R., Ahmad, S. R., Hussain, N., Ayub, Y., & Ibrar, M. (2023). PLOS One, 18(9), e0289069.
Impact Factor: 4.75
Summary: This article presents a novel biochar-supported metallo-inorganic nanocomposite synthesized via a green approach. It effectively removes toxic heavy metals such as lead and chromium from water systems, contributing to the development of sustainable water purification methods.

Electrodialysis Using Modified Membranes

Citation: Ahmad, M., Hussain, S., Abid, M. A., Mumtaz, A., Ibrar, M., & Muhammad, S. (2022). Journal of Membrane Science and Research, 8(1).
Impact Factor: ~2.2
Summary: This study explores the fabrication of ultrathin anion-exchange coatings on cation-exchange membranes to enhance water dissociation in electrodialysis. The research introduces a novel bipolar junction concept for improving desalination efficiency and clean water production.

🎯 Conclusion

Muhammad Ibrar stands out as a dedicated and innovative chemist, whose work addresses critical needs in public health and environmental safety through green chemistry and nanotechnology. His selected publications demonstrate both scientific rigor and real-world applicability. With a growing citation record and active research contributions, he continues to make significant strides toward sustainable scientific solutions and is a deserving candidate for recognition in academic and research excellence.

liang zou | Microgrid system | Best Academic Researcher Award

Mr. liang zou | Microgrid system | Best Academic Researcher Award

professor, Shandong University, China

Professor Zou Liang is a leading scholar in the field of electrical engineering, currently serving as the Director of the Institute of Electrical Theory and New Technology at the School of Electrical Engineering, Shandong University. He holds the titles of professor and doctoral supervisor and has made significant contributions to high voltage and insulation technology. He has been recognized through numerous national and provincial honors, including selection for China’s National Youth Talent Program, designation as a leading talent in innovation and entrepreneurship in Jiangsu Province, and acknowledgment as an outstanding young and middle-aged scholar at Shandong University. He holds key professional roles such as committee member of the China Electrotechnical Society’s Energy Storage Systems and Electromagnetic Compatibility Committees, expert contributor to the “Light of Electric Power” initiative, and serves as director of the Shandong Electrotechnical Society. As an IEEE member and frequent reviewer for prestigious journals, Professor Zou has established a distinguished academic presence nationally and internationally.

Professional Profile

ORCID

🎓 Education

Professor Zou Liang received a comprehensive education in electrical engineering, culminating in a doctoral degree that laid the foundation for his specialized focus in high voltage engineering and new insulation technologies. His academic training emphasized both theoretical and applied research, which he has continuously advanced throughout his career. As an educator, he teaches undergraduate courses such as Fundamentals of Electrical Engineering (High Voltage Section) and Power System Grounding Technology, and a graduate-level course on Online Monitoring and Fault Diagnosis of Electrical Equipment, demonstrating his strong integration of teaching and research.

💼 Experience

From March 2021 to March 2023, Professor Zou served as the Director of the Mobile Program for Electrical Science and Engineering under the National Natural Science Foundation of China. His leadership experience extends to national-level research programs, where he has successfully managed complex, multidisciplinary projects. With over a decade of involvement in electrical engineering innovation, he has coordinated major government and industry-funded projects, collaborated across institutions, and provided technical consulting for the development of cutting-edge power system technologies.

🔬 Research Interests

Professor Zou’s research centers on the high-frequency discharge and electromagnetic optimization of new energy equipment, as well as the regulation and modification of high-performance insulation materials. His work bridges theoretical modeling and practical applications, including micromagnetic simulations, plasma degradation methods, and molecular dynamics studies of advanced composite materials. A pioneer in the field, he is particularly noted for advancing knowledge in nanocrystalline soft magnetic materials and for developing interdisciplinary methodologies that combine physics, materials science, and power systems engineering.

📚 Publications Top Notes

Micromagnetic Simulation of Saturation Magnetization of Nanocrystalline Soft Magnetic Alloys under High-Frequency Excitation

Authors: K. Guo, L. Zou*, L. Dai, et al.
Published in: Symmetry, Volume 14, Issue 7, Article 1443, Year: 2022
DOI: [Available upon request]
Summary:
This paper presents a micromagnetic simulation approach to analyze the saturation magnetization behavior of nanocrystalline soft magnetic alloys when exposed to high-frequency excitation fields.

Molecular Dynamics Simulation of the Influence of Functionalized Doping on Thermodynamic Properties of Cross-Linked Epoxy/Carbon Nanotube Composites

Authors: M. Ding, L. Zou*, L. Zhang, T. Zhao, Q. Li
Published in: Transactions of China Electrotechnical Society, Volume 36, Issue 23, Pages 5046–5057, Year: 2021
Summary:
This research employs molecular dynamics (MD) simulations to evaluate the thermodynamic properties of epoxy/carbon nanotube (CNT) composites subjected to various functionalized doping techniques.

A Review on Factors That Affect Surface Charge Accumulation and Charge-Induced Surface Flashover

Authors: M. Yuan, L. Zou*, Z. Li, L. Pang, T. Zhao, L. Zhang, J. Zhou, P. Xiao, S. Akram, Z. Wang, S. He
Published in: Nanotechnology, Volume 32, Issue 26, Year: 2021
Summary:
This comprehensive review article explores the various physical, chemical, and environmental factors that influence surface charge accumulation and the onset of flashover in insulating materials. The authors categorize the influence of surface morphology, humidity, material defects, electric field distribution, and charge mobility.

Investigation of Non-Thermal Atmospheric Plasma for the Degradation of Avermectin Solution

Authors: Y. Lv, L. Zou*, H. Li, Z. Chen, X. Wang, Y. Sun, L. Fang, T. Zhao, Y. Zhang
Published in: Plasma Science and Technology, Volume 23, Issue 5, Year: 2021
Summary:
This study examines the degradation efficiency of non-thermal atmospheric plasma (NTAP) on avermectin, a commonly used pesticide, in aqueous solutions. The paper analyzes plasma-induced chemical reactions, energy transfer mechanisms, and byproduct formation.

Influence of the External and Internal Factors on Saturation Magnetization Process for Nanocrystalline Alloy

Authors: Liang Zou, Jiale Wu, Zhiyun Han, et al.
Published in: IEEE Transactions on Magnetics, Volume 54, Issue 10, Article 7205708, Year: 2018
Summary:
This paper investigates how both intrinsic factors (such as atomic structure and grain size) and extrinsic conditions (such as applied magnetic field and temperature) affect the saturation magnetization of nanocrystalline magnetic alloys.

🔚 Conclusion

Professor Zou Liang’s academic and research excellence, coupled with his visionary leadership in engineering innovation, marks him as a distinguished contributor to the field of electrical engineering. His work not only addresses critical scientific challenges in high voltage and insulation technology but also offers practical solutions that advance energy system reliability and environmental safety. Through rigorous scholarship, prolific publication, and dedicated service to professional societies, he continues to set a standard for excellence in science, technology, and education.

Clara Mata | Liquid Hydrogen | Best Researcher Award

Dr. Clara Mata | Liquid Hydrogen | Best Researcher Award

Senior Advanced Application Engineer, 3M Company, United States

Clara Mata is a distinguished Senior Specialist Application Engineer with over 25 years of experience in applied research and development, primarily at the forefront of energy-related technologies. Her multifaceted career spans critical sectors such as oil and gas, mining, and, more recently, the rapidly evolving field of liquid hydrogen energy. With a robust foundation in fluid dynamics, heat transfer, and solids mechanics, Clara has consistently driven innovation by combining experimental techniques with advanced modeling. Her work is marked by a strong customer-oriented approach and interdisciplinary collaboration, making her a pivotal figure in transforming engineering solutions into commercially viable technologies at 3M. She is also a prolific contributor to patents and peer-reviewed publications, showcasing her commitment to advancing science through practical application.

Professional Profile

🎓 Education

Clara Mata holds a Ph.D. in Fluid Mechanics from the University of Minnesota – Twin Cities (1994–1998), where she developed a strong foundation in transport phenomena and experimental fluid mechanics. She began her academic journey with a Bachelor’s degree in Mechanical Engineering from Universidad Simón Bolívar in Caracas, Venezuela (1984–1990). This rigorous education provided the technical depth and analytical rigor that continue to define her engineering work today.

🛠️ Professional Experience

Clara began her professional career as a Senior Research Scientist at PDVSA-Intevep in Venezuela, where she led experimental modeling of particle transport, gas-liquid flow in pipelines, and the rheological characterization of complex fluids like Orimulsion®. She collaborated with CNRS on micellar solutions and surfactant mixing processes. Transitioning to the U.S., she served as a Postdoctoral Associate at the University of Minnesota from 2006 to 2008, focusing on diffusion-based extraction in microfluidic systems and teaching mechanics courses. She then joined 3M as a Research Scientist (2008–2009), leading fluid flow experiments in oil and gas applications. Since 2010, Clara has served as a Senior Advanced Application Engineer at 3M, where she has made groundbreaking contributions to cryogenic storage technologies, lightweight cements, and energy sector innovations.

🔬 Research Interests

Clara’s research centers on fluid dynamics, thermal conductivity, multiphase flows, cryogenic insulation, and the mechanical behavior of engineered materials under extreme conditions. Her recent focus on the thermal behavior of insulation materials in liquid hydrogen storage has contributed to safer and more efficient energy solutions. Clara is particularly interested in translating fundamental physics into scalable, field-ready applications in energy and sustainability.

📚 Publications Top Notes

Title: Validating Effective Thermal Conductivity of Glass Microspheres in Cryogenic Storage Insulation via Finite Element Analysis
Author: Clara Mata
Published in: CEC/ICMC, 2025
Summary: Finite element analysis confirms glass microspheres’ thermal performance, aiding material selection for efficient cryogenic hydrogen tank insulation systems.

Title: Study of the Evacuation of Gas in Bulk-Fill Insulation Materials Used in Large-Scale LH₂ Storage Tanks
Author: Clara Mata
Published in: Journal Volume 97, pp. 1498–1506, 2025
Summary: Investigates gas evacuation behavior in cryogenic insulation, enhancing thermal performance in large-scale liquid hydrogen storage tanks.

Title: Survival of Hollow Glass Microspheres in Drilling Fluids Applications – Effect of the Drill Bit/Formation Contact
Author: Clara Mata
Published in: Journal of Petroleum Science & Engineering, Vol. 189, 106966, 2020
Summary: Assesses microsphere durability during drilling, optimizing materials to improve performance in aggressive subsurface environments.

Title: Carbon Nanotubes Reinforced Lightweight Cement Testing Under Triaxial Loading Conditions
Author: Clara Mata
Published in: Journal of Petroleum Science and Technology, Vol. 174, pp. 663–675, 2019
Summary: Explores how carbon nanotubes enhance lightweight cement strength, promoting safer operations in downhole high-stress environments.

Title: Drilling Fluid Density and Hydraulic Drag Reduction with Glass Bubble Additive
Author: Clara Mata
Published in: Journal of Energy Resources Technology, ASME, Vol. 139(4), 042904, 2017
Summary: Demonstrates how glass bubbles reduce fluid density and drag, improving energy efficiency in oil and gas drilling processes.

🏆 Conclusion

Clara Mata’s career exemplifies the highest standards of applied engineering research, translating scientific rigor into real-world solutions that advance energy technologies and industrial innovation. Her ability to span multiple disciplines, from cryogenics to drilling fluids, and her consistent output of impactful patents and publications underscore her unique contributions to science and industry. Through leadership, deep technical knowledge, and a commitment to collaboration, Clara has earned her place as a frontrunner for the Best Academic Researcher Award. Her work not only addresses present-day challenges but also lays a foundation for future advancements in sustainable and efficient energy systems.

Ahmed ElMahalawy | Spotlights | Best Academic Researcher Award

Assoc. Prof. Dr. Ahmed ElMahalawy | Spotlights | Best Academic Researcher Award

Assoc. Prof. Dr. Ahmed ElMahalawy, Suez Canal University, Egypt

Ahmed Mohamed El-Sayed Mohamed El-Mahalawy is an accomplished Associate Professor of Physics at the Faculty of Science, Suez Canal University, Egypt. With deep expertise in experimental solid-state physics, particularly organic thin films for optoelectronic and solar cell applications, Dr. El-Mahalawy has established himself as a significant contributor to materials science and photodetector technology. His career spans extensive academic teaching, impactful research, and participation in global conferences and workshops, all of which underscore his commitment to scientific innovation and education.

🔹Professional Profile

🎓 Education

Dr. El-Mahalawy’s academic foundation is rooted in the Suez Canal University, where he earned his BSc in 2010, MSc in 2015, and PhD experimental solid-state physics. His doctoral work titled “Study of Some Physical Properties of Copper (II) Acetylacetonate Thin Films and Their Optoelectronic Applications” reflects his early focus on exploring materials for future energy and sensor technologies. His master’s thesis investigated 1,4,5,8 Naphthalene Tetracarboxylic Dianhydride Thin Films, while his undergraduate project examined spectroscopic properties of doped polyvinyl alcohol films. These research efforts laid a strong foundation for his current trajectory in optoelectronics and nanomaterials.

👨‍🏫 Experience

Since joining Suez Canal University, Dr. El-Mahalawy has served across multiple instructional roles, beginning as a teaching assistant and ascending to Associate Professor in 2024. He has taught an expansive range of courses, including Experimental Physics, Semiconductor Physics, Advanced Solid State Physics, Electronic and Optical Properties of Nanomaterials, and Biophysics. He has also contributed to postgraduate and diploma-level programs, particularly within the Arab Academy for Science, Technology & Maritime Transport. His teaching excellence is complemented by his participation in curriculum design, digital education tools, and quality management in higher education.

🔬 Research Interests

Dr. El-Mahalawy’s research interests are centered around thin-film materials, organic-inorganic hybrid systems, nanostructured semiconductors, and optoelectronic devices. His investigations primarily target the development of next-generation photodetectors, solar cells, and functional electronic materials. He is particularly interested in doping effects, plasma treatments, and material characterizations that lead to optimized optical and electronic properties.

📚Publications Top Notes

🔹Unveiling of novel synthesized coumarin derivative for efficient self-driven hybrid organic/inorganic photodetector applications

Authors: A.R. Wassel, E.R. El-Sawy, A.M. El-Mahalawy
Summary: Synthesized coumarin-based compound enhances hybrid photodetector performance with self-powered and efficient photoresponse.

🔹Exploration of doping-dependent structural, optical, and electrical properties of thermally evaporated CdSe thin films for improved photodetection performance

Authors: A.R. Wassel, S.A. Mansour, F.M. Mohamed, A.M. El-Mahalawy
Summary: Cd doping improves CdSe thin films’ structure and optoelectronic behavior for better photodetectors.

🔹 Exploitation of plasma treatment-assisted monocarboxylic cobalt phthalocyanine nanorod growth for high-efficiency photodetection applications

Authors: A.M. El-Mahalawy, M.A. Abd El‑Ghaffar, W. Abbas, A.R. Wassel
Summary: Plasma-guided nanorod growth enhances photodetector sensitivity, morphology, and overall optoelectronic performance.

🔹Controllability of optical, electrical, and magnetic properties of synthesized Cd-doped MgFe₂O₄ nanostructure

Authors: S.E. Ali, A.A. Marzouk, H. Abdel-Khalek, A.M. El-Mahalawy
Summary: Cd-doped MgFe₂O₄ nanostructures exhibit tunable properties for sensing and magnetic device applications.

🔹Appreciably optimization of PVA/PVP nanocomposite blend for enhanced optoelectronics properties and multifunctional applications

Authors: A.M. El-Mahalawy, M.M. Abdrabou, S.A. Mansour, F.M. Ali
Summary: Optimized PVA/PVP blend shows improved conductivity, flexibility, and stability for flexible electronic devices.

🏆 Conclusion

Dr. Ahmed El-Mahalawy exemplifies the integration of scholarly rigor and practical innovation. Through his contributions to photodetector design, material optimization, and physics education, he has built a distinguished academic profile marked by high-impact publications and international engagement. His ongoing commitment to advancing optoelectronic material science, combined with his mentorship of students and leadership in academic development, make him an outstanding nominee for recognition in scientific excellence awards. His work not only advances fundamental knowledge but also contributes directly to emerging technologies in sustainable electronics and sensor design.

Perihan Akbas | Biodegradable | Best Academic Researcher Award

Assist. Prof. Dr. Perihan Akbas | Biodegradable | Best Academic Researcher Award

Assist. Prof. Dr. Perihan Akbas, Ondokuz Mayis University, Turkey

Dr. Perihan Akbaş is an Assistant Professor at Ondokuz Mayıs University, specializing in microbiology, biotechnology, forensic sciences, and food safety. With more than 20 years of academic and research experience, she integrates biology with applied sciences to address real-world problems such as antimicrobial resistance, bioactive compound extraction, and microbial quality assessment. Her career reflects a passion for scientific innovation and interdisciplinary collaboration.

Professional Profile

Scopus Profile

ORCID

🎓 Education

Dr. Akbaş earned her PhD in General Biology from Atatürk University in 2013. Her doctoral thesis, titled “Locusta migratoria çekirgesi kullanılarak mikrobiyolojik amaçlı pepton üretimi,” focused on the use of locust biomass for microbial peptone production. She previously completed her MSc in Biology at Kafkas University in 2004 with a thesis on detecting E. coli O157:H7 in döner kebabs in Kars. Her undergraduate degree in Biology was obtained from Atatürk University in 2002.

🧑‍🏫 Experience

From 2014 to 2022, Dr. Akbaş served at Kafkas University before joining Ondokuz Mayıs University in 2022. She has held administrative roles such as Vice Director and Deputy Director in research centers and vocational schools. In teaching, she has instructed master’s and undergraduate courses in forensic identification, microbiology, and criminalistics.

🔬 Research Interests

Her research includes microbial resistance, antimicrobial and antioxidant activities of natural compounds, nanobiotechnology (e.g., silver nanoparticles), bioethanol production, deep eutectic solvents, and forensic toxicology. She frequently collaborates across disciplines, applying molecular biology, analytical chemistry, and experimental pharmacology in her studies.

📚 Publications Top Notes

1️⃣ Investigation of Salmonella spp. in Doner Kebab and Salads: Significance of False Positive Results

🗞️ Türk Mikrobiyoloji Cemiyeti Dergisi
📅 Published: 2025 | 🔗 DOI: 10.54453/TMCD.2025.79847
👩 Contributors: Perihan Akbaş, Çiğdem Sezer, Fatih Büyük, Gönül Damla Büyük, Eray Büyük
📌 Summary: This study assessed the accuracy of Salmonella detection in ready-to-eat foods using molecular and phenotypic methods. It highlighted the risk of false positives and stressed the importance of validation in microbial diagnostics.

2️⃣ Determination of the Antimicrobial, Antioxidant Activities and Fatty Acid Composition of Peganum harmala Seed

🗞️ Brazilian Archives of Biology and Technology
📅 Published: 2023 | 🔗 DOI: 10.1590/1678-4324-2023220237
👩 Contributors: E. Kaya, P. Akbaş
📌 Summary: The research investigated Peganum harmala seed extracts, identifying significant antimicrobial and antioxidant potential along with a rich fatty acid profile, suggesting therapeutic and nutraceutical applications.

3️⃣ Antimicrobial and Antioxidant Activities of Chenopodium album Extracts and Their Effects on Gentamicin Nephrotoxicity in Rats

🗞️ Food Science & Nutrition
📅 Published: December 2023 | 🔗 DOI: 10.1002/fsn3.3733
👩 Contributors: Perihan Akbaş, Elife Kaya, Mustafa Makav, Gülden Yıldız
📌 Summary: This experimental animal study demonstrated the protective role of Chenopodium album against nephrotoxicity induced by gentamicin and validated its antimicrobial effectiveness.

4️⃣ Assessment of Microbial Quality of Local and Packaged Ice Creams

🗞️ Osmaniye Korkut Ata University Journal of Science
📅 Published: December 20, 2023 | 🔗 DOI: 10.47495/okufbed.1203728
👩 Contributors: Perihan Akbaş
📌 Summary: This paper evaluated microbial contamination in both packaged and artisanal ice creams, pointing out significant hygiene-related issues and calling for stricter food safety controls.

5️⃣ Using Locusta Migratoria as a Nitrogen Source for the Growth and Development of Microorganisms

🗞️ Sakarya University Journal of Science
📅 Published: June 30, 2022 | 🔗 DOI: 10.16984/saufenbilder.1037496
👩 Contributors: Perihan Akbaş, Esabi Başaran Kurbanoğlu
📌 Summary: The study explored alternative protein sources using insect biomass for peptone production. It demonstrated that locust-derived substrates could effectively support microbial growth, offering a sustainable biotechnological solution.

🧾 Conclusion

Dr. Perihan Akbaş’s research trajectory reflects a rare blend of innovation, applicability, and interdisciplinary depth. Her work has significantly contributed to food safety, natural product science, and sustainable biotech. As both a mentor and a research leader, she has established a strong academic legacy. Her published studies, ongoing projects, and dedication to science education mark her as a deserving candidate for recognition in scientific achievement.

 

 

Seyed Hassan Talebi | Educational Technology | Best Researcher Award

Dr. Seyed Hassan Talebi | Educational Technology | Best Researcher Award

Retired Faculty Member, University of Mazandaran, Iran

Dr. Seyed Hassan Talebi is an experienced and highly regarded Associate Professor in English Language Teaching (ELT), known for his research and teaching in applied linguistics, second language acquisition, and academic English instruction. Over the course of more than two decades, he has taught at various academic levels and institutions in Iran and internationally, including a recent teaching appointment in Uzbekistan. He retired from his full-time role at the University of Mazandaran in 2023 but remains an active researcher and educator. His academic journey reflects a strong commitment to improving teaching methodologies and learner outcomes in multilingual contexts.

Professional Profile

ORCID

🎓 Education

Dr. Talebi completed his B.A. in Persian Language and Literature Teaching at the University of Zanjan, Iran, followed by an M.A. in English Language Teaching at Khatam University, Tehran. He earned his Ph.D. in English Language Teaching from Mysore University, India, in 2009. Additionally, he holds a CELTA certificate from ES Dubai (2024), along with TESOL and IELTS Preparation Certificates from Imperial English UK (2022), which support his practical and theoretical foundation in language education.

👨‍🏫 Experience

Beginning his teaching career in 1995 at the high school level in Iran, Dr. Talebi expanded into higher education as a lecturer and later as an assistant and associate professor. He worked at institutions such as Open University and the University of Mazandaran, offering courses in conversational English, academic reading, and teacher education. From 2010 to 2023, he served as a faculty member at the University of Mazandaran. In April–May 2025, he was appointed to teach at a governmental school in Tashkent, Uzbekistan, marking his growing global engagement in language education.

🔬 Research Interests

Dr. Talebi’s scholarly work covers a wide range of ELT fields, including ESP/EAP, contrastive analysis, strategy-based and task-based language learning, reading comprehension, bilingualism/multilingualism, learner autonomy, and second language acquisition (SLA). His work is especially noted for its focus on cross-linguistic transfer of reading strategies and the cognitive and affective variables that influence academic reading in multilingual settings.

🏅 Awards

In December 2022, Dr. Talebi was recognized as the Distinguished Researcher by the Faculty of Persian Literature and Foreign Languages at the University of Mazandaran. He is also a member of the editorial board of the journal Interdisciplinary Studies in English Language Teaching (ISELT), contributing to the academic quality and advancement of research in English language teaching.

📘 Publications Top Notes

1. Are L2 (English) and L1 (Persian) affected similarly in cognitive and affective domains?: Revisiting interdependence hypothesis

Movahedi, M. & Talebi, S.H. (2020). Journal of Asia TEFL, 17(4), 1266–1283.
DOI: 10.18823/asiatefl.2020.17.4.7.1266
This article revisits Cummins’ Interdependence Hypothesis by comparing how cognitive and emotional factors influence reading comprehension in both Persian (L1) and English (L2). The findings reveal that while some cognitive strategies transfer across languages, the emotional (affective) responses vary significantly, indicating the need for differentiated instructional approaches based on language and learner background.

2. Perceived Reading Strategy Awareness and Use (RSAU) and Reading Ability across Foreign Language Disciplines at the University Level

Talebi, S.H., Maghsoudi, M., & Khodamoradi, A. (2020). Journal of College Reading and Learning, 50(2), 173–192.
DOI: 10.1080/10790195.2020.1786480
This study investigates university students’ awareness and use of reading strategies in English and how this correlates with their reading performance in various language majors. The results underscore the importance of metacognitive strategy training, particularly for students of Arabic, English, and French, to enhance comprehension and academic success.

3. The Effect of Iranian EFL Learners’ Reading Motivation on Their Reading Comprehension Ability Regarding Their University Fields of Study

Maghsoudi, M., Talebi, S.H., & Khodamoradi, A. (2020). Journal of College Reading and Learning, 50(4).
DOI: 10.1080/10790195.2020.1823911
This article explores the impact of reading motivation on comprehension performance across different academic fields. Humanities students displayed higher intrinsic motivation and better comprehension outcomes than peers in technical fields. The study highlights the need for discipline-specific motivation strategies in EFL reading instruction.

4. The Effects of Collaborative and Non-Collaborative Approaches to Teaching Reading Strategies on Iranian EFL Learners’ Reading Comprehension and Attitude toward Reading

Rajaei, A., Talebi, S.H., & Abadikhah, S. (2020). Íkala, Revista de Lenguaje y Cultura, 25(1), 55–73.
DOI: 10.17533/udea.ikala.v25n01a05
This study compares collaborative and individual approaches to teaching reading strategies in EFL classrooms. The findings suggest that collaborative instruction significantly improves both comprehension skills and learner attitudes, supporting the integration of cooperative learning in language education programs.

5. The Relationship between Teacher Personality and Teacher Interpersonal Behavior: The Case of Iranian Teacher Educators

Khodamoradi, A., Talebi, S.H., & Maghsoudi, M. (2020). Applied Research on English Language, 9(3), 325–348.
DOI: 10.22108/are.2020.118591.1486
This research explores how the personality traits of teacher educators influence their interpersonal behavior with students. The study reveals that personality dimensions such as openness and conscientiousness are strong predictors of supportive teaching styles, reinforcing the role of personality in professional development.

✅ Conclusion

Dr. Seyed Hassan Talebi’s career is marked by a balanced integration of theoretical insight and practical application. His research has contributed meaningfully to understanding language learning strategies, motivation, cross-linguistic influence, and teacher-student interaction. With a strong foundation in both Persian and English language pedagogy, his work addresses pressing issues in multilingual education, contributing to the development of informed, inclusive, and effective language instruction in global academic settings.

Mojtaba Maghsoudi | Teacher Education | Best Researcher Award

Assoc. Prof. Dr. Mojtaba Maghsoudi | Teacher Education | Best Researcher Award

Assoc. Prof. Dr. Mojtaba Maghsoudi, Farhangian University, Iran

Dr. Mojtaba Maghsoudi is an esteemed academician and Associate Professor of English Language at Farhangian University, Arak, where he also chairs the department. His influential contributions to the field of Teaching English as a Foreign Language (TEFL) have been recognized across various educational and linguistic platforms. With a diverse portfolio spanning teaching, curriculum design, translation, and editorial leadership, Dr. Maghsoudi is celebrated for shaping the educational landscape in Iran and beyond.

Professional Profile

ORCID

🎓 Education

Dr. Maghsoudi earned his Ph.D. in TEFL from Mysore International University, India (2005–2009), where he delved deeply into language acquisition and bilingual education. He completed his M.A. in TEFL at Isfahan University, Iran (1998–2001), and his B.A. in TEFL at Arak University (1992–1996). His multidisciplinary academic path reflects a consistent dedication to linguistic excellence and applied pedagogical research.

💼 Experience

Throughout his career, Dr. Maghsoudi has held numerous academic and administrative roles. He currently serves as an Associate Professor and department chair at Farhangian University, Arak. He has previously lectured at institutions such as Islamic Azad University, Payam Noor University, Arak and Shazand, and Science and Research Universities in Arak and Saveh. He has guided over 85 M.A. and 3 Ph.D. students and evaluated nearly 100 theses as a referee, showcasing his deep commitment to mentorship and academic rigor.

🔍 Research Interests

Dr. Maghsoudi’s research centers on bilingualism, third-language acquisition, cognitive strategies in language learning, and educational psychology. He is particularly interested in the intersections of personality traits and language learning success, the effects of linguality on reading strategies, and the implementation of CALL (Computer-Assisted Language Learning) technologies in EFL settings.

🏆 Awards & Honors

Dr. Maghsoudi has been recognized extensively for his academic and research excellence. He was named a national distinguished professor at Farhangian University in 2014, 2015, 2017, 2018, and 2020, and a national gifted researcher in 2016 and 2022. His editorial roles in prestigious journals such as the English Language Teaching Journal and International Journal of English and Education further highlight his influence in the global academic community.

📚 Publications Top Notes

📘 1. Contributions of Motivation to Read in L2, Proficiency and L1 Reading Strategy Awareness to L2 Reading

📅 Year: 2021
📖 Journal: Reading and Writing Quarterly
👨‍💼 Contributor: Maghsoudi, M.

🔎 Summary:
This research investigates how second-language (L2) reading proficiency, motivation to read, and first-language (L1) reading strategy awareness collectively influence reading performance in L2 among Iranian EFL learners. The findings reveal that while motivation plays a significant role, it is the synergistic effect of all three factors that contributes most profoundly to successful reading comprehension. The study emphasizes the need for integrated pedagogical approaches that foster both strategic reading habits and motivational growth in L2 environments.

🧠 2. Productive or Maladaptive Immunity? Which One is More Dominant Among Iranian EFL Prospective Teachers?

📅 Year: 2021
📖 Journal: Applied Research on English Language
👨‍💼 Contributor: Maghsoudi, M.

🔎 Summary:
This article explores the concept of psychological “immunity” among Iranian EFL teacher trainees, categorizing their coping mechanisms as either productive or maladaptive. Through detailed questionnaires and interviews, Dr. Maghsoudi identifies the prevalent types of psychological responses to academic stress and evaluates their effects on pedagogical development. The study concludes that fostering productive immunity enhances teacher resilience, while maladaptive tendencies correlate with burnout and reduced teaching efficacy.

📚 3. The Effect of Iranian EFL Learners’ Reading Motivation on Their Reading Comprehension Ability Regarding Their University Fields of Study

📅 Year: 2021
📖 Journal: Journal of College Reading and Learning
👨‍💼 Contributors: Maghsoudi, M.; Talebi, S.H.; Khodamoradi, A.

🔎 Summary:
In this study, the authors examine how students’ academic disciplines (e.g., humanities, sciences) interact with their motivation to read in English, ultimately influencing their reading comprehension skills. The results indicate discipline-based variations in motivation levels and comprehension performance, with humanities students showing higher engagement and success in reading tasks. The findings advocate for discipline-sensitive reading instruction that aligns with students’ academic and motivational profiles.

🤖 4. Machine Versus Human Translation Outputs: Which One Results in Better Reading Comprehension Among EFL Learners?

📅 Year: 2020
📖 Journal: JALT CALL Journal
👨‍💼 Contributors: Maghsoudi, M.; Mirzaeian, V.

🔎 Summary:
This experimental research compares the reading comprehension outcomes of students using machine translation tools versus those relying on human-translated materials. The study finds that while machine translations offer speed and accessibility, human translations lead to more accurate comprehension and deeper text engagement. The authors suggest that despite technological advancements, human input remains essential for nuanced language learning.

📖 5. Perceived Reading Strategy Awareness and Use (RSAU) and Reading Ability Across Foreign Language Disciplines at the University Level

📅 Year: 2020
📖 Journal: Journal of College Reading and Learning
👨‍💼 Contributors: Talebi, S.H.; Maghsoudi, M.; Khodamoradi, A.

🔎 Summary:
This paper delves into how students across various foreign language disciplines perceive and utilize reading strategies, and how these perceptions correlate with actual reading performance. The study categorizes strategies into cognitive and metacognitive types and finds that a higher awareness and application of both correlate with better comprehension results. The research supports metacognitive strategy instruction as a critical component in advanced language programs.

🧾 Conclusion

Dr. Mojtaba Maghsoudi stands as a paragon of academic dedication, cross-cultural inquiry, and educational impact. His robust portfolio in research, teaching, and mentorship reflects a tireless pursuit of linguistic advancement and learner empowerment. His innovative studies, national accolades, and editorial contributions underscore his significance not only in Iran but also in global educational circles. Through a lifelong commitment to the betterment of EFL education, Dr. Maghsoudi continues to inspire new generations of educators and scholars.

Loredana Elena Vijan | Intraspecific Hybridization | Best Researcher Award

Assoc. Prof. Dr. Loredana Elena Vijan | Intraspecific Hybridization | Best Researcher Award

Assoc. Prof. Dr. Loredana Elena Vijan, Pitesti University, Romania

Loredana Elena Vîjan is a distinguished Romanian physical chemist and associate professor at the National University of Science and Technology POLITEHNICA Bucharest, Pitești University Centre. With over two decades of experience in physical chemistry and applied radiochemistry, she has established herself as a leading expert in the study of bioactive compounds, molecular interactions, and advanced analytical techniques. Her work bridges fundamental chemistry and practical applications in horticulture, pharmacology, and environmental sciences, emphasizing the interplay between chemical substances and biological systems. Vîjan’s extensive research output and dedication to education have significantly contributed to her field, earning her recognition in national and international scientific communities.

Professional Profile

🎓 Education

Vîjan’s academic journey began at the University of Bucharest, where she completed a Bachelor of Science in Physical Chemistry in 1995. She continued to deepen her expertise by obtaining a Master’s degree in Physical Chemistry and Applied Radiochemistry in 1996 from the same institution. Her doctoral studies culminated in a Ph.D. in Physical Chemistry in 2002 at the University of Bucharest’s Faculty of Chemistry. This solid foundation in physical chemistry provided her with the tools to conduct sophisticated molecular-level investigations, particularly in spectroscopic and computational studies.

💼 Experience

Since 1996, Vîjan’s career has evolved from teaching chemistry at the high school level to holding academic positions at the University of Pitești. She progressed from lecturer (2003-2008) to associate professor (2008-2024), and currently holds an associate professorship at the POLITEHNICA Bucharest, Pitești University Centre. Over this period, she has actively engaged in teaching, mentoring students, and managing research projects. Her experience is enriched by participation in numerous nationally funded research projects focusing on environmental quality, horticultural crop improvement, and the recovery of valuable metals. Her leadership in project management and collaboration with research teams underlines her commitment to advancing scientific knowledge and practical solutions.

🔬 Research Interests

Vîjan’s research interests lie predominantly in physical chemistry applied to molecular interactions and bioactive compounds. She specializes in the use of spectroscopic methods such as UV-VIS, fluorescence spectroscopy, FTIR, Raman, and NMR to explore the structural and dynamic properties of chemical and biological molecules. Her work often involves molecular modeling and computational chemistry to understand excited states and transition states of organic compounds. Additionally, she investigates extraction and processing technologies for horticultural plants, focusing on antioxidant properties and the prooxidant effects of natural compounds. Her multidisciplinary approach extends to adsorption studies and environmental chemistry, highlighting sustainable practices and the recovery of resources from waste.

📖 Publications Top Notes

📄 Assessment of Ascorbic Acid, Polyphenols, Flavonoids, Anthocyanins and Carotenoids Content in Tomato Fruits

Authors: M. Tudor-Radu, L. E. Vîjan, C. M. Tudor-Radu, I. Tița, R. Sima, R. Mitrea
Published in Notulae Botanicae Horti Agrobotanici Cluj-Napoca, Volume 44, Issue 2, Pages 477-483, 2016

Summary: This publication delivers an in-depth biochemical profile of tomato fruits, identifying essential antioxidants and their variation, which supports the understanding of nutritional quality and breeding strategies for enhanced health benefits.

📄 Botanical Origin Influence on Some Honey Physicochemical Characteristics and Antioxidant Properties

Authors: L. E. Vîjan, I. C. Mazilu, C. Enache, S. Enache, C. M. Topală
Published in Foods, Volume 12, Issue 11, Article 2134, 2023

Summary: The article elucidates the impact of floral sources on honey’s chemical and antioxidant profiles, providing essential data for quality assessment and supporting the value of botanical origin in honey characterization.

📄 Evolution of the Polyphenols, Flavonoids, and Tannins Content in Walnut Leaves and Green Walnut Husk During Growing Season

Authors: S. Giura, B. Mihai, M. D. L. Vulpe, L. E. Vîjan, R. Mitrea
Published in Notulae Botanicae Horti Agrobotanici Cluj-Napoca, Volume 47, Issue 4, Pages 1264-1271, 2019

Summary: The study tracks antioxidant compound variations in walnut plant parts throughout growth, informing agricultural practices to optimize the use of walnut leaves and husks as natural antioxidant sources.

📄 DNA Influence on Norfloxacin Fluorescence

Authors: E. Perianu, I. Rau, L. E. Vîjan
Published in Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, Volume 206, Pages 8-15, 2019

Summary: This paper elucidates the molecular interactions between norfloxacin and DNA by studying fluorescence changes, advancing the knowledge of antibiotic behavior in biological environments.

📄 Adsorption Isotherms of Phenol and Aniline on Activated Carbon

Authors: L. E. Vîjan, M. Neagu
Published in Revue Roumaine de Chimie, Volume 57, Issue 2, Pages 85-93, 2012

Summary: The study characterizes how activated carbon adsorbs phenol and aniline, offering valuable information for pollution control and the optimization of wastewater treatment processes.

🏆 Conclusion

Loredana Elena Vîjan’s career exemplifies the productive fusion of rigorous physical chemistry with practical applications in biological and environmental contexts. Her academic and research trajectory reflects a sustained commitment to scientific excellence, interdisciplinary collaboration, and education. Through her extensive publication record and participation in key projects, she has advanced understanding of molecular interactions, bioactive compounds, and sustainable chemical processes. Her work continues to inspire developments in chemistry and related sciences, making her a strong candidate for recognition and awards in the scientific community.

Nashwa Yousif | Renewable Energy | Women Researcher Award

Assist. Prof. Dr. Nashwa Yousif | Renewable Energy | Women Researcher Award

Assist. Prof. Dr. Nashwa Yousif, Egyptian Atomic Energy Authority, Egypt

Dr. Nashwa Mohamed Mahmoud Yousif is an Assistant Professor of Material Sciences at the Egyptian Atomic Energy Authority, specializing in energy storage and renewable energy research. With over 18 years of academic and research experience, she has contributed extensively to advanced electrochemical analysis, nanomaterials development, and polymer/metal oxide composites for sustainable energy applications. Currently based at the Electrochemical Lab of the Solid State and Accelerators Department at the National Center for Radiation Research & Technology (NCRRT), her contributions span academic supervision, collaborative research, and high-impact journal publications.

Professional Profile

ORCID

🎓 Education

Dr. Yousif’s academic journey is rooted in physics and material science. She steadily progressed through academic ranks, beginning as a physics researcher in 2007. Her advanced studies led her to specialize in solid-state physics and energy materials, which has underpinned her extensive work on electrochemical energy storage systems and nanocomposites.

🧪 Experience

Dr. Yousif has steadily grown her academic career within the Egyptian Atomic Energy Authority. She began as a physics researcher (2007–2012), before being promoted to assistant lecturer (2012–2016), and lecturer (2016–2022). In 2022, she assumed the role of Assistant Professor in Material Sciences at the NCRRT. Throughout this time, she has been deeply involved in both laboratory research and the mentorship of graduate students, significantly influencing Egypt’s scientific landscape in the fields of renewable energy and electrochemical materials.

🔬 Research Interests

Her core research interests include the development of cathode materials for multivalent ion batteries, synthesis of polymer/metal oxide nanocomposites, and conversion of plastic waste into carbon nanomaterials for energy storage. She focuses on scalable, eco-friendly approaches to sustainable energy solutions, particularly in enhancing battery technology and supercapacitor performance.

📚 Publications Top Notes

🔬 Title: Facile Synthesis and Characterization of Perovskite-Type Nd₁−ₓCaₓMnO₃ Nanocomposites for High-Performance Supercapacitor Electrodes

📅 Published: May 2025
📘 Journal: Journal of Electronic Materials
👥 Contributors: Soraya Abdelhaleem, M. S. Shalaby, H. M. Hashem, Nashwa M. Yousif

Summary:
This research explores the synthesis of Nd₁−ₓCaₓMnO₃ perovskite-type nanocomposites using a facile route and their application as electrode materials in supercapacitors. The study reveals how calcium doping impacts the crystal structure and electrochemical behavior, resulting in enhanced specific capacitance and charge-discharge performance. The nanocomposites exhibit excellent electrochemical stability, making them promising candidates for next-generation energy storage devices.

🔬 Title: Plastic Waste‐Derived Carbon Nanotubes Decorated with Mo₂C, MoO₃, or MoO₃/Mo₂C as Effective Nanocomposite Materials for Supercapacitor Applications

📅 Published: May 2025
📘 Journal: ChemistrySelect
👥 Contributors: Ahmed E. Awadallah, Ateyya A. Aboul‐Enein, Nashwa M. Yousif, Mostafa A. Azab, Ahmed M. Haggar

Summary:
This environmentally focused study converts plastic waste into carbon nanotubes (CNTs) and further functionalizes them with Mo₂C, MoO₃, and a hybrid MoO₃/Mo₂C composite. The resulting materials exhibit exceptional electrochemical properties, including high conductivity and capacitance. The work provides a dual solution for plastic waste management and supercapacitor enhancement, highlighting the potential of green nanotechnology.

🔬 Title: Impact of Carbon Nanotubes on Superconducting Properties and Ferromagnetism of Indium-Doped Bi-2212 Superconductors: Critical Current Density Enhancement

📅 Published: January 2025
📘 Journal: Physica B: Condensed Matter
👥 Contributors: Soraya Abdelhaleem, Manale Noun, Nashwa M. Yousif, Mustafa Saeed Shalaby

Summary:
This article examines how the inclusion of carbon nanotubes influences the superconducting behavior of indium-doped Bi-2212 ceramics. The findings indicate enhanced critical current density and a marked effect on the magnetic and ferromagnetic properties. The research provides insight into the interplay between nanostructures and superconducting materials, opening avenues for high-efficiency superconductors in electronics.

🔬 Title: Electrochemical Performance of Flexible Supercapacitor Electrodes Based on EVA/PANI@CNT Nano-Composite

📅 Published: December 2024
📘 Journal: Russian Journal of Electrochemistry
👥 Contributors: Nashwa M. Yousif, Mohamed R. Balboul

Summary:
This study introduces a novel flexible electrode made from a composite of ethylene-vinyl acetate (EVA), polyaniline (PANI), and carbon nanotubes (CNTs). The material displays impressive capacitance retention and flexibility, ideal for wearable energy storage devices. It marks a significant advancement in flexible supercapacitor technology through a cost-effective and scalable approach.

🔬 Title: γ‐Irradiation Hardness Investigations of (PANI)₁−ₓ(Bi₂Te₃)ₓ Composites for Thermistor Applications

📅 Published: February 10, 2023
📘 Journal: Journal of Applied Polymer Science
👥 Contributors: Mustafa Saeed Shalaby, Soraya Abdelhaleem, Eman O. Taha, Nashwa M. Yousif

Summary:
The paper investigates the impact of γ-irradiation on polyaniline/Bi₂Te₃ composites, assessing their structural stability and electrical response. The results demonstrate that controlled irradiation improves the thermistor behavior of the composite, making it suitable for temperature-sensing applications in radiation-exposed environments. This work contributes to the design of robust, radiation-resistant sensors.

🧭 Conclusion

Dr. Nashwa M. Yousif exemplifies the modern researcher’s commitment to both innovation and sustainability. Her work bridges academic research and practical solutions, tackling some of the world’s most urgent energy challenges. Through her publications, graduate supervision, and national projects, she continues to lead with scientific integrity and a forward-looking vision. Her contributions make her a strong contender for recognition in national and international award platforms, especially in categories honoring women in science and sustainability innovation.