Khalifa Aliyu Ibrahim | Engineering and Technology | Best Researcher Award

Khalifa Aliyu Ibrahim | Engineering and Technology | Best Researcher Award

Mr Khalifa Aliyu Ibrahim, Cranfield University, United Kingdom

Mr. Kamilu A. Ibrahim is a dedicated researcher and academic with expertise in AI-driven high-frequency power electronics. Currently pursuing a PhD at Cranfield University, he has a strong background in physics, energy, and power systems. His research focuses on sustainable energy solutions, incorporating artificial intelligence and machine learning. With numerous publications in reputable journals and conferences, Mr. Ibrahim has made significant contributions to renewable energy, hydrogen systems, and power electronics. His academic career includes roles as a lecturer and research assistant, demonstrating his passion for knowledge dissemination. Recognized for his excellence, he has received prestigious scholarships and awards.

Publication Profile

Google Scholar

Education

Mr. Kamilu A. Ibrahim is currently pursuing a PhD in AI-driven design of high-frequency power electronics at Cranfield University, where he explores innovative approaches to sustainable energy and power systems. He previously earned a Master of Science in Energy Systems and Thermal Processes from Cranfield University (2020-2021), gaining expertise in energy efficiency, renewable energy, and thermal management. Further advancing his research skills, he completed a Master’s by Research (M.Res.) in Energy and Power (2022-2023), focusing on advanced power systems and their optimization. His academic journey began with a Bachelor of Science in Physics from Kaduna State University (2013-2016), where he built a strong foundation in physical sciences and energy applications. Throughout his education, Mr. Ibrahim has demonstrated a commitment to innovation in power electronics, artificial intelligence, and sustainable energy solutions. His multidisciplinary background equips him with the technical and analytical skills essential for driving advancements in renewable energy and intelligent power systems. 🎓⚡🔋

Experience

Mr. Kamilu A. Ibrahim has a strong background in research, teaching, and project management, with a focus on power systems, renewable energy, and AI applications. Since 2022, he has been working as a Research Assistant at Cranfield University, contributing to cutting-edge studies in AI-driven high-frequency power electronics. Prior to this, he served as a Lecturer at Kaduna State University from 2021 to 2022, where he taught physics and energy-related courses while mentoring students in research projects. From 2020 to 2021, he was a Lecturer at Nuhu Bamalli Polytechnic, Zaria, where he played a key role in curriculum development and academic instruction in energy systems. Throughout his career, Mr. Ibrahim has combined his expertise in energy and artificial intelligence to drive innovation in sustainable energy solutions. His experience spans teaching, publishing research in top-tier journals, and collaborating on interdisciplinary projects, making significant contributions to the advancement of renewable energy technologies.

Awards and Honors

Mr. Kamilu A. Ibrahim has been recognized for his academic excellence and research contributions through several prestigious awards and honors. He received the Petroleum Technology Development Fund Scholarship (2021), a highly competitive award supporting outstanding researchers in energy and power systems. In 2020, he was also honored with the Merit-based Foreign Scholarship, which enabled him to pursue advanced studies in energy systems and AI-driven power electronics. In addition to these distinguished scholarships, Mr. Ibrahim has earned multiple certificates of completion from various specialized training programs, focusing on sustainable energy, artificial intelligence applications in power systems, and cutting-edge advancements in high-frequency electronics. His commitment to continuous learning and innovation has positioned him as a leader in his field, contributing significantly to research in renewable energy, hydrogen storage, and machine learning applications. These achievements underscore his dedication to academic excellence and groundbreaking contributions to the future of energy technologies.

Publication Top Notes

  • 📊 Revolutionizing Power Electronics Design Through Large Language Models: Applications and Future Directions (2024)
  • 🌊 Floating Solar Wireless Power Transfer System for Electric Ships: Design and Laboratory Tests (2025)
  • 🔋 Harnessing Energy for Wearables: A Review of Radio Frequency Energy Harvesting Technologies (2023)
  • ☀️ The Effect of Solar Irradiation on Solar Cells (2019)
  • 🌡️ Cooling of Concentrated Photovoltaic Cells—A Review and the Perspective of Pulsating Flow Cooling (2023)
  • 🌱 High-Performance Green Hydrogen Generation System (2021)
  • ⚗️ Advancing Hydrogen: A Closer Look at Implementation Factors, Current Status, and Future Potential (2023)
  • 📡 Survey and Assessment of Radiation Levels Associated with Mobile and Wireless Telecommunication Mast in Residential and Office Areas within Kaduna Metropolis (2019)
  • 🚀 Decision Support System for Sustainable Hydrogen Production: Case Study of Saudi Arabia (2025)
  • 🛢️ Measurements of Pour Points, Flash Points, Water Contents, and Viscosity of Some Selected Automobile Oils Used as Lubricants in Nigeria (2022)

zohreh bagher | biomedical | Best Researcher Award

Assoc Prof Dr. zohreh bagher | biomedical | Best Researcher Award

Iran University of Medical Sciences (IUMS), Iran

Author Profile

Early Academic Pursuits

Zohreh Bagher embarked on her academic journey with a Bachelor of Radiology from Tehran University of Medical Sciences in 2008. This laid the foundation for her further studies in the medical field.She pursued a Master of Anatomy at Qazvin University of Medical Sciences in 2010, conducting research on bone repair using porous hydroxyapatite/β-tricalcium phosphate and xenograft scaffold in rabbits with tibia defects. Her early academic pursuits provided her with a solid understanding of anatomy and research methodologies.

Professional Endeavors

Zohreh Bagher continued her academic journey with a Ph.D. in Tissue Engineering from Iran University of Medical Sciences, School of Advanced Technologies in Medicine, completing it in 2015. Her doctoral thesis, supervised by Prof. M. T. Joghataei and Prof. H. Mirzadeh, focused on the differentiation of Wharton’s Jelly-Derived Mesenchymal Stem Cells to Motor Neuron-Like Cells on PCL/Collagen nanofibrous scaffolds. This research highlighted her interest and expertise in tissue engineering and regenerative medicine.

Contributions and Research Focus

Throughout her academic and professional career, Zohreh Bagher has been dedicated to advancing knowledge in ENT and Head and Neck research. Her research interests include tissue engineering, stem cell biology, and biomaterials, with a focus on applications in motor neuron regeneration and bone repair. She has contributed significantly to the field through her research, publications, and collaborations.

Accolades and Recognition

Zohreh Bagher's contributions to her field have been recognized through various accolades and awards. Her research has been acknowledged for its innovative approaches and potential impact on clinical practice. Her expertise in tissue engineering and regenerative medicine has earned her respect among peers and colleagues.

Impact and Influence

Zohreh Bagher's work has had a significant impact on the field of regenerative medicine, particularly in the context of ENT and Head and Neck research. Her research findings have the potential to transform treatment approaches for various conditions, offering hope for improved outcomes and quality of life for patients.

Legacy and Future Contributions

As an Associate Professor at the ENT and Head and Neck Research Center and Department of The Five Senses Health Institute, School of Medicine, Iran University of Medical Sciences, Zohreh Bagher continues to make substantial contributions to her field. Her legacy lies in her dedication to advancing knowledge and translating research into clinical practice. In the future, she aims to further explore the applications of tissue engineering and stem cell biology in addressing clinical challenges in ENT and Head and Neck medicine, leaving a lasting impact on patient care and scientific understanding.

Citations

A total of 2184 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations        2184
  • h-index          28
  • i10-index       43

Notable Publications 

Wound healing with alginate/chitosan hydrogel containing hesperidin in rat model

Z Bagher, A Ehterami, MH Safdel, H Khastar, H Semiari, A Asefnejad, ...
Journal of Drug Delivery Science and Technology
Mechanism of anosmia caused by symptoms of COVID-19 and emerging treatments

R Najafloo, J Majidi, A Asghari, M Aleemardani, SK Kamrava, S Simorgh, ...
ACS chemical neuroscience
An injectable anisotropic alginate hydrogel containing oriented fibers for nerve tissue engineering

P Ghaderinejad, N Najmoddin, Z Bagher, M Saeed, S Karimi, S Simorgh, ...
Chemical Engineering Journal
Graphene oxide: Opportunities and challenges in biomedicine

P Zare, M Aleemardani, A Seifalian, Z Bagher, AM Seifalian
Nanomaterials
Alginate-magnetic short nanofibers 3D composite hydrogel enhances the encapsulated human olfactory mucosa stem cells bioactivity for potential nerve regeneration application

S Karimi, Z Bagher, N Najmoddin, S Simorgh, M Pezeshki-Modaress
International journal of biological macromolecules
Development of chitosan/hyaluronic acid hydrogel scaffolds via enzymatic reaction for cartilage tissue engineering

SM Davachi, SMA Haramshahi, SA Akhavirad, N Bahrami, ...
Materials Today Communications
Alginate sulfate/ECM composite hydrogel containing electrospun nanofiber with encapsulated human adipose-derived stem cells for cartilage tissue engineering

R Najafi, H Chahsetareh, M Pezeshki-Modaress, M Aleemardani, ...
International Journal of Biological Macromolecules
Nanofiber/hydrogel composite scaffolds based on alginate sulfate and extracellular matrix for cartilage tissue engineering applications

S Azarsa, M Pezeshki-Modaress, F Yazdian, Z Bagher, H Chahsetareh, ...
Process Biochemistry