Adnan Ibrahim | Sustainable Energy Technology | Best Researcher Award Universiti Kebangsaan Malaysia

Assist. Prof. Dr Adnan Ibrahim | Sustainable Energy Technology | Best Researcher Award

Research Fellow, Universiti Kebangsaan Malaysia, Malaysia

Adnan Ibrahim is an Associate Professor specializing in Renewable Energy at Universiti Kebangsaan Malaysia. Renowned for his pioneering work in solar energy and thermal systems, he has contributed significantly to photovoltaic thermal (PVT) technologies and nanofluid-based solar applications. With over a decade of academic and industrial experience, he has published extensively in top-tier journals and presented at international conferences. His research emphasizes innovative solutions to enhance the efficiency and sustainability of energy systems. Dr. Ibrahim’s collaborations with global experts have established him as a thought leader in renewable energy technologies.

PROFILE

Google scholar

Orcid

Scopus

STRENGTHS FOR THE AWARD

  1. Expertise in Renewable Energy: Dr. Adnan Ibrahim is an accomplished academic in Renewable Energy with a Ph.D. from UKM, focusing on Solar Energy Technology and Building Integrated Photovoltaic Thermal Systems (BIPVT).
  2. Prolific Research Output: His work is well-cited, with notable contributions in photovoltaic thermal (PVT) technology, including hybrid systems, nanofluids, and nano-PCM-based advancements.
  3. High Impact Publications: Several of his publications have citations exceeding 500, demonstrating significant influence in the field.
  4. Innovation and Interdisciplinary Work: Research on nanofluid and nano-PCM, as well as passive cooling PV modules with fins and planar reflectors, showcases innovation in enhancing energy efficiency and sustainability.
  5. International Collaboration: Extensive collaborations with researchers worldwide, adding diversity and a global perspective to his research.
  6. Academic Leadership: As an Associate Professor at Universiti Kebangsaan Malaysia, he is actively involved in teaching and mentoring, contributing to the academic community.
  7. Relevance and Applicability: His work in energy economic analysis and system optimization addresses real-world challenges in renewable energy implementation.

AREAS FOR IMPROVEMENTS

  1. Broadening Research Applications: Expanding research to include emerging technologies such as hydrogen-based energy systems or carbon capture integration could further solidify his leadership in renewable energy.
  2. Outreach and Policy Impact: Greater emphasis on translating research into actionable policies and industry practices would enhance societal impact.
  3. Grants and Industry Partnerships: Strengthening partnerships with industrial stakeholders for applied research could bolster funding and practical adoption.

EDUCATION

πŸ“š Ph.D. in Renewable Energy (2007-2012) – Universiti Kebangsaan Malaysia (UKM), Malaysia
πŸ“š M.Sc. in Integrated Product Development (2000-2002) – University of Warwick, United Kingdom
πŸ“š B.Eng. in Manufacturing System Engineering (1998-2000) – University of Birmingham, United Kingdom

EXPERIENCE

πŸ‘¨β€πŸ« Associate Professor – Universiti Kebangsaan Malaysia, specializing in renewable energy systems and sustainable technologies.
πŸ”¬ Lead Researcher – Multiple projects on PVT technologies, building-integrated solar systems, and nanofluid applications.
🌍 International Collaborator – Partnering with global institutions to advance solar thermal research.
πŸ“– Mentor and Educator – Supervising postgraduate students and delivering impactful lectures on energy sustainability.

AWARDS AND HONORS

πŸ† Best Researcher Award – Recognized for outstanding contributions to renewable energy innovation.
🌟 Top Cited Researcher – Multiple papers ranked among the most cited in energy conversion and management journals.
πŸ’‘ Innovation Excellence Award – Acknowledged for groundbreaking advancements in PVT system technologies.
πŸŽ“ Outstanding Educator Award – Celebrated for exceptional teaching and mentoring in renewable energy.

RESEARCH FOCUS

β˜€οΈ Solar Energy – Advancing photovoltaic thermal (PVT) systems for higher energy efficiency.
🌑️ Thermal Systems – Developing nanofluid and nano-PCM-based collectors for sustainable applications.
🏒 Building-Integrated Systems – Innovating BIPVT systems for residential and commercial energy solutions.
πŸ”¬ Energy Optimization – Focusing on exergy and thermal analysis for optimal system performance.

PUBLICATION TOP NOTES

πŸ“„ Performance analysis of photovoltaic thermal (PVT) water collectors
πŸ“„ Recent advances in flat plate photovoltaic/thermal (PV/T) solar collectors
πŸ“„ Evaluation of the nanofluid and nano-PCM based photovoltaic thermal (PVT) system: An experimental study
πŸ“„ Efficiencies and improvement potential of building-integrated photovoltaic thermal (BIPVT) system
πŸ“„ Comparison of prediction methods of PV/T nanofluid and nano-PCM system using a measured dataset and artificial neural network
πŸ“„ Performance of photovoltaic thermal collector (PVT) with different absorbers design
πŸ“„ Energy and exergy analyses of photovoltaic thermal collector with βˆ‡-groove
πŸ“„ Turbulent convective heat transfer of silica oxide nanofluid through corrugated channels: An experimental and numerical study
πŸ“„ Evaluation of Single-Pass Photovoltaic Thermal Air Collector With Rectangular Tunnel Absorber
πŸ“„ Hybrid Photovoltaic Thermal (PV/T) Air and Water-Based Solar Collectors Suitable for Building Integrated Applications

CONCLUSION

Dr. Adnan Ibrahim’s significant academic contributions, innovative research in solar energy technology, and dedication to advancing renewable energy systems make him a strong candidate for the Best Researcher Award. By addressing areas such as policy impact and industrial collaboration, he could further enhance his already impressive profile. Overall, his achievements position him as a deserving recipient of this honor.

Dr. Jianxiao Wang – Renewable Energy System Decarbonization – Best Researcher Award

Dr. Jianxiao Wang - Renewable Energy System Decarbonization - Best Researcher Award

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Dr. Jianxiao Wang commenced his academic journey with distinction, earning Bachelor's degrees in Engineering and Economics from Tsinghua University in 2014. He continued his academic pursuits at Tsinghua University, where he achieved remarkable success, culminating in the completion of his Ph.D. in Electrical Engineering in 2019. Dr. Wang's academic achievements were further recognized through prestigious scholarships and accolades, including the Tsinghua University President Jiang Nanxiang Scholarship.

PROFESSIONAL ENDEAVORS

Dr. Wang's professional journey is marked by a diverse range of experiences and contributions to academia and industry. He served as a visiting researcher at esteemed institutions such as Stanford University, University of California, Berkeley, and Texas A&M University. Additionally, his role as a project leader at the Ministry of Science and Technology of the People's Republic of China underscores his commitment to driving innovation and technological advancement in the energy sector.

CONTRIBUTIONS AND RESEARCH FOCUS ON RENEWABLE ENERGY SYSTEM DECARBONIZATION

Dr. Wang's research focuses on Renewable Energy System Decarbonization, with a particular emphasis on data-driven decision-making for energy storage and renewable power systems. His groundbreaking research provides essential insights into evaluating the levelized cost and designing national low-carbon pathways for emerging technologies. Dr. Wang's contributions extend beyond academia, as evidenced by his involvement in the 14th Five-Year Plan for High Tech Development and research on the 2035 National Science and Technology Development Strategy in China.

IMPACT AND INFLUENCE

Dr. Wang's research has garnered international recognition and acclaim, with numerous publications in top-tier journals and conferences. His seminal work has been acknowledged through prestigious awards and honors, including the Wiley Open Science Excellent Author Program and the IEEE PES General Meeting Best Paper Award. Furthermore, Dr. Wang's research findings have practical applications and have been implemented in demonstration projects across regional power grids in China, contributing to significant economic benefits and supporting initiatives such as China's pilot base of 100% renewable-powered Winter Olympics in 2022.

ACADEMIC CITATIONS

Dr. Wang's research articles have received widespread attention and citation in the academic community, reflecting the significance and impact of his contributions to Renewable Energy System Decarbonization. His publications in esteemed journals such as Nature Sustainability, Nature Communications, Cell The Innovation, and Cell Patterns underscore the quality and relevance of his research.

LEGACY AND FUTURE CONTRIBUTIONS

Dr. Wang's legacy is characterized by his commitment to advancing Renewable Energy System Decarbonization through innovative research, academic leadership, and industry collaboration. His continued efforts to mentor students, engage with industry partners, and disseminate knowledge through publications and conferences ensure the enduring impact of his work on shaping the future of sustainable energy.

NOTABLE PUBLICATION

Battery valuation and management for battery swapping station.Β  2023 (1)