Shima Sadaf | Electrical Engineering | Best Academic Researcher Award

Assist. Prof. Dr. Shima Sadaf | Electrical Engineering | Best Academic Researcher Award

King Faisal University | Saudi Arabia

Assist. Prof. Dr. Shima Sadaf is a highly accomplished researcher in materials science, nanotechnology, electrochemistry, and energy systems, with a strong publication record reflected in 486 citations, an h-index of 11, and an i10-index of 11, demonstrating the impact and consistency of her scientific contributions. Her research spans advanced materials synthesis, including nanomaterials, thin films, perovskites, and green-synthesized nanoparticles, with applications in electrocatalysis, supercapacitors, photocatalysis, energy storage, and environmental remediation. She has made notable advancements in designing electrocatalysts for hydrogen evolution reactions, developing high-performance supercapacitive materials, and creating photocatalysts capable of degrading pollutants and enhancing hydrogen production. Her work also extends to UV photodetectors, memristor technologies, and electrochemical sensors for detecting heavy metals, glucose, uric acid, and dopamine. In the field of energy systems, she has contributed to innovative DC–DC converters, voltage ripple reduction techniques, and sustainable power solutions for nanogrids and renewable energy integration. Her publications include significant contributions to journals in materials chemistry, ceramics, energy conversion, and semiconductor processing, covering topics such as green-synthesized TiO₂/rGO nanocomposites, lead-free perovskites for solar-driven water splitting, NiCo₂O₄-based electrocatalysts, and advanced transition-metal nanoparticles. Her research continues to advance sustainable materials and energy technologies with broad scientific and industrial relevance.

Profiles : Scopus | Orcid | Google Scholar

Featured Publications

Utami, M., Ramadhani, M. A., Purnama, I., Purwiandono, G., Yenn, T. W., Husniati, Sadaf, S., Al-Taisan, N. A., Almuhawish, N. F., Al-Farhan, A. M., et al. (2026). Green biogenic synthesis of Ag-loaded TiO₂/rGO nanocomposite and its prospective applications in antibacterial and self-cleaning surface coating. Materials Chemistry and Physics, 131573.

Khan, A. N., Rabhi, S., Khan, N. U., Ansari, S. A., Sadaf, S., & Alam, M. W. (2025). Harnessing solar energy with lead-free Tl₂BPI₆ (B = Cs, Rb) double perovskites for photocatalytic water splitting. Ceramics International.

Ghubayra, R., Shariq, M., Sadaf, S., Almuhawish, N. F., Iqbal, M., & Alam, M. W. (2025). Constructing a hybrid CuO over bimetallic spinal NiCo₂O₄ nanoflower as electrocatalyst for hydrogen evolution reaction. International Journal of Hydrogen Energy.

Kaur, H., Sharma, A., Kumar, S., Alam, M. W., Sadaf, S., & Al-Othoum, M. A. S. (2025). Evaluation of photocatalytic efficacy of biosynthesized cubic NiFe₂O₄ nanoparticles. Nano.

Alam, M. W., Kharade, R. B., Alsulaim, G. M., Aleithan, S. H., Sadaf, S., Chava, R. K., Shin, D.-K., & Yewale, M. A. (2025). Improved Ni₃V₂O₈ supercapacitive performance via urea-driven morphological alteration. Ceramics International.

Yewale, M. A., Shin, D. K., Alam, M. W., Teli, A. M., Nabi, S., Ansari, S. A., Sadaf, S., & Al-Kahtani, A. A. (2024). Controlled synthesis and electrochemical characterization of Co₃V₂O₈ hexagonal sheets for energy storage applications. Colloids and Surfaces A: Physicochemical and Engineering Aspects.

Alam, M. W., Nivetha, A., BaQais, A., Ansari, S. A., Yewale, M. A., & Sadaf, S. (2024). Development and analysis of novel Sm-doped LaSiO for photocatalytic degradation and electrochemical sensing of heavy metals. Ceramics International.

Alam, M. W., Ambikapathi, R., Nabi, S., Nivetha, A., Abebe, B., Almutairi, H. H., Sadaf, S., & Almohish, S. M. (2024). Advancements in green-synthesized transition metal/metal-oxide nanoparticles for sustainable wastewater treatment: Techniques, applications, and future prospects. Materials Research Express.

Aldughaylibi, F. S., Ulla, H., Allag, N., Alam, M. W., BaQais, A., Al-Othoum, M. A. S., & Sadaf, S. (2024). Development of molybdenum trioxide–based modified graphite sheet electrodes for enhancing the electrochemical sensing of dopamine. Materials Science in Semiconductor Processing.

Kumar, J. V., Alam, M. W., Selvaraj, M., Almutairi, H. H., Albuhulayqah, M., Sadaf, S., Dhananjaya, M., & Joo, S. W. (2024). Fluorescent carbon dots for biodiesel production: A comprehensive review (2019–2024). Inorganic Chemistry Communications.

Alam, M. W., Allag, N., Utami, M., Waheed-Ur-Rehman, M., Al-Othoum, M. A. S., & Sadaf, S. (2024). Facile green synthesis of α-bismuth oxide nanoparticles: Its photocatalytic and electrochemical sensing of glucose and uric acid in an acidic medium. Journal of Composites Science.

Elaheh Yaghoubi | Energy | Best Researcher Award

Dr. Elaheh Yaghoubi | Energy | Best Researcher Award

Karabuk University | Turkey

Author profile

Scopus

Orcid

Early Academic Pursuits

Dr. Elaheh Yaghoubi's academic journey began with an Associate's degree in Electrical Engineering from University College of Rouzbahan, Iran, where she graduated with a GPA of 3.5. She then pursued a Bachelor's degree in Electrical Engineering at Aryan Institute of Science and Technology University, Iran, achieving a perfect GPA of 4. Following this, she completed her Master's degree in Electrical Engineering at Islamic Azad University in Qaemshahr, Mazandaran, Iran, again with a perfect GPA of 4. Her Master's thesis focused on developing a routing algorithm for a proposed topology for a grid on a large-scale chip to detect errors. Dr. Yaghoubi is currently a Ph.D. candidate in Electronic and Electrical Engineering at Karabuk University in Turkey, where she is working on her thesis titled "Optimal power control of grid-connected distributed generation in a hierarchical framework based on Model Predictive Control."

Professional Endeavors

Dr. Yaghoubi has a diverse professional background that complements her academic achievements. From 2015 to 2018, she served as a Senior Manager at Kati Kabl Tabarestan Factory in Mazandaran, Iran, where she was responsible for quality assurance, inspecting products to ensure high quality, and troubleshooting technical issues. She then worked as a Senior Manager at Rico Electronics Company in Mazandaran, Iran, overseeing product quality assurance and implementing design modifications. From 2019 to 2021, she worked as a Website Designer at WebCore Company in Mazandaran, designing front-end interfaces with HTML, CSS, and JavaScript, and back-end systems with PHP and Laravel. Currently, Dr. Yaghoubi is a Principal Researcher at the Power Electrical Developing Advanced Research (PEDAR) group, focusing on investigation, teaching, and designing.

Contributions and Research Focus

Dr. Yaghoubi's research interests are broad and interdisciplinary, encompassing power system analysis, power system stability, power management, microgrids, smart grids, renewable energies, model predictive controllers (MPC), artificial neural networks, machine learning, deep learning, plasmonic applications, and nano-electronic devices. Her current research work involves optimal power control of grid-connected distributed generation using model predictive control, a topic that is crucial for the advancement of smart grids and renewable energy systems. She has also contributed to the understanding and development of routing algorithms for large-scale chips and has experience in quality control and product management in industrial settings.

Accolades and Recognition

Throughout her academic and professional career, Dr. Yaghoubi has been recognized for her excellence and contributions. She successfully passed her Ph.D. qualification exam with a perfect grade of 4 out of 4. Her consistent academic performance, marked by perfect GPAs during her Bachelor's and Master's studies, reflects her dedication and expertise in her field.

Impact and Influence

Dr. Yaghoubi's work has had a significant impact on both academic and industrial fields. Her research on smart grids, optimization techniques, and model predictive control contributes to the development of more efficient and reliable power systems. Her practical experience in quality control and product management ensures that her research is grounded in real-world applications and industrial standards.

Legacy and Future Contributions

Dr. Yaghoubi's legacy lies in her interdisciplinary approach to electronic and electrical engineering, integrating theoretical research with practical applications. Her work in power systems, renewable energy, and advanced control techniques positions her as a key contributor to the future of smart grid technology and sustainable energy solutions. As she continues her research and professional activities, Dr. Yaghoubi is likely to make further significant contributions to the field, driving innovation and excellence in electronic and electrical engineering.

 

Notable Publications

A systematic review and meta-analysis of machine learning, deep learning, and ensemble learning approaches in predicting EV charging behavior 2024

A systematic review and meta-analysis of artificial neural network, machine learning, deep learning, and ensemble learning approaches in field of geotechnical engineering 2024

Controlling and tracking the maximum active power point in a photovoltaic system connected to the grid using the fuzzy neural controller 2023 (1)

Tunable band-pass plasmonic filter and wavelength triple-channel demultiplexer based on square nanodisk resonator in MIM waveguide 2022 (9)

Triple-channel glasses-shape nanoplasmonic demultiplexer based on multi nanodisk resonators in MIM waveguide 2021 (11)