Dr. Aya Chelh | Renewable Energy | Best Researcher Award

Dr. Aya Chelh | Renewable Energy | Best Researcher Award

Mohammed V University | Morocco

Dr. Aya Chelh is a PhD candidate in Materials Science at University Mohammed V in Rabat, Morocco, specializing in first-principles computational modeling and density functional theory simulations for advanced energy materials. Her research investigates structural, electronic, optical, thermodynamic, and hydrogen storage properties of innovative compounds with promising applications in photovoltaics, hydrogen production and storage, and spintronics. She previously obtained her Master’s degree in Matter and Radiation, graduating with distinction, where she focused on the elaboration and characterization of transparent conductive oxide thin films, and a Bachelor of Science in Physics from University Chouaib Doukkali, El Jadida. In her doctoral work, she has conducted extensive DFT analyses on band structures, optical absorption, Renewable Energy and thermodynamic stability, while also engaging in multidisciplinary collaborations that bridge computational studies with material synthesis and experimental characterization. Her research portfolio demonstrates both depth and interdisciplinarity, preparing her for impactful contributions to academia and industry. Scientifically, Dr. Chelh has published 9 documents, which have collectively received 29 citations from 11 citing documents, with an h-index of 3, reflecting the relevance and growing impact of her work in the field of sustainable energy technologies.

Profiles: Scopus | Orcid

Featured Publications

Chelh, A., Akenoun, B., Dahbi, S., & Ez-Zahraouy, H. (2026). Ab-initio investigation of structural, elastic, optoelectronic, thermoelectric and thermodynamic properties of the pure, doped and co-doped calcium hafnate perovskite for photovoltaic applications. Journal of Physics and Chemistry of Solids, 190, 113232.

Chelh, A., Akenoun, B., Dahbi, S., Chakkour, I., Ouichou, H., Tahiri, N., & Ez-Zahraouy, H. (2025). Hydrogen storage potential and physical properties of XSiH₃ (X = Bi, Ga) perovskite hydrides: A first-principles study. Computational Condensed Matter, 37, e01133.

Chelh, A., Dahbi, S., & Ez-Zahraouy, H. (2025). Ab-initio study of the structural, electronic, optical, and thermoelectric properties of chalcogenide-doped Sr₂UZnO₆. Solid State Communications, 386, 116024.

Chelh, A., Akenoun, B., Dahbi, S., & Ez-Zahraouy, H. (2025). First-principles calculations to investigate photovoltaic, photocatalytic, and spintronic properties of Fe-doped and alloyed MgSiO₃ perovskite. Journal of Physics and Chemistry of Solids, 189, 112773.

Chelh, A., Akenoun, B., Dahbi, S., & Ez-Zahraouy, H. (2025). Compressive strain effects on the photocatalytic and optoelectronic properties of CsInBr₃ for efficient hydrogen production: A DFT study. Surfaces and Interfaces, 47, 107356.

Mr. Feng Yueyun – Electrical engineering – Best Researcher Award

Mr. Feng Yueyun - Electrical engineering - Best Researcher Award

Beijing Jiaotong University - China

Author Profile

SCOPUS

Summary

Feng Yueyun is an emerging scholar in the field of power electronics, with a strong academic background and hands-on experience in advanced engineering systems. after graduating in the top 1% of his class from shanxi university, he pursued his master’s degree at beijing jiaotong university, specializing in power electronics and electric drive. he has demonstrated technical proficiency with tools like matlab/simulink, ccs, and vivado, and has actively contributed to research projects involving hybrid vehicles and motor control systems. as a first author, he has already published three scientific papers, reflecting his growing academic impact and dedication to innovation.

Early academic pursuits

Feng Yueyun embarked on his academic journey with a strong foundation in electrical engineering. he pursued his undergraduate degree at shanxi university (2019–2023), where he consistently ranked in the top 1% of his major with a gpa of 3.64/4.5. his coursework reflects his aptitude in core areas Electrical engineering, including circuit theory (96), fundamentals of electronic technology (92), and electric machinery and drive (93.3). his academic commitment was complemented by certifications such as cet-4, cet-6, and the putonghua proficiency certificate.

Professional endeavors

Currently pursuing his master's degree in power electronics and electric drive at beijing jiaotong university (2023–2026), feng has immersed himself in high-level engineering applications. he has acquired hands-on experience with Electrical engineering essential tools including matlab/simulink, ccs (dsp), vivado (fpga), and rt-lab, equipping him to tackle real-world industrial and research problems in power electronics.

Contributions and research focus

Feng yueyun plays an active role in advanced research projects within the domain of hybrid engineering vehicles, where he serves as the primary student supervisor. his technical responsibilities include debugging control boards and modifying dsp code for mining truck traction motor systems. his commitment to power electronics is further evidenced by Electrical engineering his research and publication record. he is the first author on three publications: one presented at an ei-indexed conference, and two published in sci journals (one fourth-tier and one second-tier).

Impact and influence

His research efforts are shaping efficient electric drive systems and energy solutions, especially within the field of power electronics. his undergraduate project—“power generation and energy storage based on human movement”—demonstrates his early initiative in exploring innovative energy technologies, Electrical engineering contributing to the broader dialogue on sustainability and human-centric design.

Academic cites

Feng’s academic visibility is growing steadily. with multiple authored papers already cited in indexed literature, his influence continues to expand within the scientific and engineering communities. his engagement with practical applications in Electrical engineering vehicle electrification and electric drive control systems further reinforces his credibility as an emerging scholar in power electronics.

Legacy and future contributions

Feng Yueyun is poised to make lasting contributions to the domain of power electronics. with a strong academic record, technical fluency, and early publication success, he is on a clear trajectory to become a thought leader in smart transportation, Electrical engineering hybrid vehicle control, and advanced electric drive systems. his future work is expected to bridge the gap between academic innovation and industrial implementation, reinforcing sustainable engineering solutions for modern infrastructure.

Notable Publications

Title: Temperature Compensation Control of an Induction Motor with Rotor Time Constant Error Regulation
Journal: Electrical Engineering
Year: 2025

Conclusion

With a proven track record in both academic excellence and applied research, Feng Yueyun is well-positioned to contribute meaningfully to the evolving field of power electronics. his work not only advances current technologies in electric drives and hybrid systems but also lays the groundwork for sustainable energy innovations. as he continues to build on his expertise, he is expected to play a significant role in shaping the future of intelligent transportation and energy-efficient solutions.